Zika virus still calls for preparedness and vaccine development

Article Type
Changed
Wed, 02/22/2023 - 10:57

Warming U.S. temperatures, the resumption of travel, and new knowledge about Zika’s long-term effects on children signal that Zika prevention and vaccine development should be on public health officials’, doctors’, and communities’ radar, even when community infection is not occurring.

“Although we haven’t seen confirmed Zika virus circulation in the continental United States or its territories for several years, it’s still something that we are closely monitoring, particularly as we move into the summer months,” Erin Staples, MD, PhD, medical epidemiologist at the Arboviral Diseases Branch of the Centers for Disease Control and Prevention in Fort Collins, Colo., told this news organization.

“This is because cases are still being reported in other countries, particularly in South America. Travel to these places is increasing following the pandemic, leaving more potential for individuals who might have acquired the infection to come back and restart community transmission.”
 

How Zika might reemerge

The Aedes aegypti mosquito is the vector by which Zika spreads, and “during the COVID pandemic, these mosquitoes moved further north in the United States, into southern California, and were identified as far north as Washington, D.C.,” said Neil Silverman, MD, professor of clinical obstetrics and gynecology and director of the Infections in Pregnancy Program at UCLA Medical Center in Los Angeles.

“On a population level, Americans have essentially no immunity to Zika from prior infection, and there is no vaccine yet approved. If individuals infected with Zika came into a U.S. region where the Aedes aegypti mosquito was present, that population could be very susceptible to infection spread and even another outbreak. This would be a confluence of bad circumstances, but that’s exactly what infectious disease specialists continue to be watchful about, especially because Zika is so dangerous for fetuses,” said Dr. Silverman.
 

How the public can prepare

The CDC recommends that pregnant women or women who plan to become pregnant avoid traveling to regions where there are currently outbreaks of Zika, but this is not the only way that individuals can protect themselves.

“The message we want to deliver to people is that in the United States, people are at risk for several mosquito-borne diseases every summer beyond just Zika,” Dr. Staples said. “It’s really important that people are instructed to make a habit of wearing EPA [U.S. Environmental Protection Agency)–registered insect repellents when they go outside. Right now, that is the single best tool that we have to prevent mosquito-borne diseases in the U.S.

“From a community standpoint, there are several emerging mosquito control methods that are being evaluated right now, such as genetic modification and irradiation of mosquitoes. These methods are aimed at producing sterile mosquitoes that are released into the wild to mate with the local mosquito population, which will render them infertile. This leads, over time, to suppression of the overall Aedes aegypti mosquito population – the main vector of Zika transmission,” said Dr. Staples.

Monica Gandhi, MD, MPH, professor of medicine and associate chief of the division of HIV, infectious diseases, and global medicine at the University of California, San Francisco, encourages her patients to wear mosquito repellent but cautioned that “there’s no antiviral that you can take for Zika. Until we have a vaccine, the key to controlling/preventing Zika is controlling the mosquitoes that spread the virus.”
 

 

 

Vaccines

The National Institute of Allergy and Infectious Diseases (NIAID) is currently investigating a variety of Zika vaccines, including a DNA-based vaccine, (phase 2), a purified inactivated virus vaccine (phase 1), live attenuated vaccines (phase 2), and mRNA vaccines (phase 2).

“I’m most excited about mRNA vaccines because they help patients produce a lot of proteins. The protein from a typical protein-adjuvant vaccine will break down, and patients can only raise an immune response to whatever proteins are left. On the other hand, mRNA vaccines provide the body [with] a recipe to make the protein from the pathogen in high amounts, so that a strong immune response can be raised for protection,” noted Dr. Gandhi.

Moderna’s mRNA-1893 vaccine was recently studied in a randomized, observer-blind, controlled, phase 1 trial among 120 adults in the United States and Puerto Rico, the results of which were published online in The Lancet. “The vaccine was found to be generally well tolerated with no serious adverse events considered related to vaccine. Furthermore, the vaccine was able to generate a potent immune response that was capable of neutralizing the virus in vitro,” said Brett Leav, MD, executive director of clinical development for public health vaccines at Moderna.

“Our mRNA platform technology ... can be very helpful against emerging pandemic threats, as we saw in response to COVID-19. What is unique in our approach is that if the genetic sequence of the virus is known, we can quickly generate vaccines to test for their capability to generate a functional immune response. In the case of the mRNA-1893 trial, the vaccine was developed with antigens that were present in the strain of virus circulating in 2016, but we could easily match whatever strain reemerges,” said Dr. Leav.

A phase 2 trial to confirm the dose of mRNA-1893 in a larger study population is underway.

Although it’s been demonstrated that Moderna’s mRNA vaccine is safe and effective, moving from a phase 2 to a phase 3 study presents a challenge, given the fact that currently, the disease burden from Zika is low. If an outbreak were to occur in the future, these mRNA vaccines could potentially be given emergency approval, as occurred during the COVID pandemic, according to Dr. Silverman.

If approved, provisionally or through a traditional route, the vaccine would “accelerate the ability to tamp down any further outbreaks, because vaccine-based immunity could be made available to a large portion of the population who were pregnant or planning a pregnancy, not just in the U.S. but also in these endemic areas,” said Dr. Silverman.


 

Takeaways from the last Zika outbreak

Practical steps such as mosquito eradication and development of vaccines are not the only takeaway from the recent Zika epidemics inside and outside the United States. A clearer picture of the short- and long-term stakes of the disease has emerged.

According to the CDC, most people who become infected with Zika experience only mild symptoms, such as fever, rash, headache, and muscle pain, but babies conceived by mothers infected with Zika are at risk for stillbirth, miscarriage, and microcephaly and other brain defects.

Although a pregnant woman who tests positive for Zika is in a very high-risk situation, “data show that only about 30% of mothers with Zika have a baby with birth defects. If a pregnant woman contracted Zika, what would happen is we would just do very close screening by ultrasound of the fetus. If microcephaly in utero or fetal brain defects were observed, then a mother would be counseled on her options,” said Dr. Gandhi.

Dr. Silverman noted that “new data on children who were exposed in utero and had normal exams, including head measurements when they were born, have raised concerns. In recently published long-term follow-up studies, even when children born to mothers infected with Zika during pregnancy had normal head growth at least 3 years after birth, they were still at risk for neurodevelopmental delay and behavioral disorders, including impact on coordination and executive function.

“This is another good reason to keep the potential risks of Zika active in the public’s consciousness and in public health planning.”

Dr. Silverman, Dr. Gandhi, and Dr. Staples have disclosed no relevant financial relationships. Dr. Leav is an employee of Moderna and owns stock in the company.

A version of this article originally appeared on Medscape.com.

Publications
Topics
Sections

Warming U.S. temperatures, the resumption of travel, and new knowledge about Zika’s long-term effects on children signal that Zika prevention and vaccine development should be on public health officials’, doctors’, and communities’ radar, even when community infection is not occurring.

“Although we haven’t seen confirmed Zika virus circulation in the continental United States or its territories for several years, it’s still something that we are closely monitoring, particularly as we move into the summer months,” Erin Staples, MD, PhD, medical epidemiologist at the Arboviral Diseases Branch of the Centers for Disease Control and Prevention in Fort Collins, Colo., told this news organization.

“This is because cases are still being reported in other countries, particularly in South America. Travel to these places is increasing following the pandemic, leaving more potential for individuals who might have acquired the infection to come back and restart community transmission.”
 

How Zika might reemerge

The Aedes aegypti mosquito is the vector by which Zika spreads, and “during the COVID pandemic, these mosquitoes moved further north in the United States, into southern California, and were identified as far north as Washington, D.C.,” said Neil Silverman, MD, professor of clinical obstetrics and gynecology and director of the Infections in Pregnancy Program at UCLA Medical Center in Los Angeles.

“On a population level, Americans have essentially no immunity to Zika from prior infection, and there is no vaccine yet approved. If individuals infected with Zika came into a U.S. region where the Aedes aegypti mosquito was present, that population could be very susceptible to infection spread and even another outbreak. This would be a confluence of bad circumstances, but that’s exactly what infectious disease specialists continue to be watchful about, especially because Zika is so dangerous for fetuses,” said Dr. Silverman.
 

How the public can prepare

The CDC recommends that pregnant women or women who plan to become pregnant avoid traveling to regions where there are currently outbreaks of Zika, but this is not the only way that individuals can protect themselves.

“The message we want to deliver to people is that in the United States, people are at risk for several mosquito-borne diseases every summer beyond just Zika,” Dr. Staples said. “It’s really important that people are instructed to make a habit of wearing EPA [U.S. Environmental Protection Agency)–registered insect repellents when they go outside. Right now, that is the single best tool that we have to prevent mosquito-borne diseases in the U.S.

“From a community standpoint, there are several emerging mosquito control methods that are being evaluated right now, such as genetic modification and irradiation of mosquitoes. These methods are aimed at producing sterile mosquitoes that are released into the wild to mate with the local mosquito population, which will render them infertile. This leads, over time, to suppression of the overall Aedes aegypti mosquito population – the main vector of Zika transmission,” said Dr. Staples.

Monica Gandhi, MD, MPH, professor of medicine and associate chief of the division of HIV, infectious diseases, and global medicine at the University of California, San Francisco, encourages her patients to wear mosquito repellent but cautioned that “there’s no antiviral that you can take for Zika. Until we have a vaccine, the key to controlling/preventing Zika is controlling the mosquitoes that spread the virus.”
 

 

 

Vaccines

The National Institute of Allergy and Infectious Diseases (NIAID) is currently investigating a variety of Zika vaccines, including a DNA-based vaccine, (phase 2), a purified inactivated virus vaccine (phase 1), live attenuated vaccines (phase 2), and mRNA vaccines (phase 2).

“I’m most excited about mRNA vaccines because they help patients produce a lot of proteins. The protein from a typical protein-adjuvant vaccine will break down, and patients can only raise an immune response to whatever proteins are left. On the other hand, mRNA vaccines provide the body [with] a recipe to make the protein from the pathogen in high amounts, so that a strong immune response can be raised for protection,” noted Dr. Gandhi.

Moderna’s mRNA-1893 vaccine was recently studied in a randomized, observer-blind, controlled, phase 1 trial among 120 adults in the United States and Puerto Rico, the results of which were published online in The Lancet. “The vaccine was found to be generally well tolerated with no serious adverse events considered related to vaccine. Furthermore, the vaccine was able to generate a potent immune response that was capable of neutralizing the virus in vitro,” said Brett Leav, MD, executive director of clinical development for public health vaccines at Moderna.

“Our mRNA platform technology ... can be very helpful against emerging pandemic threats, as we saw in response to COVID-19. What is unique in our approach is that if the genetic sequence of the virus is known, we can quickly generate vaccines to test for their capability to generate a functional immune response. In the case of the mRNA-1893 trial, the vaccine was developed with antigens that were present in the strain of virus circulating in 2016, but we could easily match whatever strain reemerges,” said Dr. Leav.

A phase 2 trial to confirm the dose of mRNA-1893 in a larger study population is underway.

Although it’s been demonstrated that Moderna’s mRNA vaccine is safe and effective, moving from a phase 2 to a phase 3 study presents a challenge, given the fact that currently, the disease burden from Zika is low. If an outbreak were to occur in the future, these mRNA vaccines could potentially be given emergency approval, as occurred during the COVID pandemic, according to Dr. Silverman.

If approved, provisionally or through a traditional route, the vaccine would “accelerate the ability to tamp down any further outbreaks, because vaccine-based immunity could be made available to a large portion of the population who were pregnant or planning a pregnancy, not just in the U.S. but also in these endemic areas,” said Dr. Silverman.


 

Takeaways from the last Zika outbreak

Practical steps such as mosquito eradication and development of vaccines are not the only takeaway from the recent Zika epidemics inside and outside the United States. A clearer picture of the short- and long-term stakes of the disease has emerged.

According to the CDC, most people who become infected with Zika experience only mild symptoms, such as fever, rash, headache, and muscle pain, but babies conceived by mothers infected with Zika are at risk for stillbirth, miscarriage, and microcephaly and other brain defects.

Although a pregnant woman who tests positive for Zika is in a very high-risk situation, “data show that only about 30% of mothers with Zika have a baby with birth defects. If a pregnant woman contracted Zika, what would happen is we would just do very close screening by ultrasound of the fetus. If microcephaly in utero or fetal brain defects were observed, then a mother would be counseled on her options,” said Dr. Gandhi.

Dr. Silverman noted that “new data on children who were exposed in utero and had normal exams, including head measurements when they were born, have raised concerns. In recently published long-term follow-up studies, even when children born to mothers infected with Zika during pregnancy had normal head growth at least 3 years after birth, they were still at risk for neurodevelopmental delay and behavioral disorders, including impact on coordination and executive function.

“This is another good reason to keep the potential risks of Zika active in the public’s consciousness and in public health planning.”

Dr. Silverman, Dr. Gandhi, and Dr. Staples have disclosed no relevant financial relationships. Dr. Leav is an employee of Moderna and owns stock in the company.

A version of this article originally appeared on Medscape.com.

Warming U.S. temperatures, the resumption of travel, and new knowledge about Zika’s long-term effects on children signal that Zika prevention and vaccine development should be on public health officials’, doctors’, and communities’ radar, even when community infection is not occurring.

“Although we haven’t seen confirmed Zika virus circulation in the continental United States or its territories for several years, it’s still something that we are closely monitoring, particularly as we move into the summer months,” Erin Staples, MD, PhD, medical epidemiologist at the Arboviral Diseases Branch of the Centers for Disease Control and Prevention in Fort Collins, Colo., told this news organization.

“This is because cases are still being reported in other countries, particularly in South America. Travel to these places is increasing following the pandemic, leaving more potential for individuals who might have acquired the infection to come back and restart community transmission.”
 

How Zika might reemerge

The Aedes aegypti mosquito is the vector by which Zika spreads, and “during the COVID pandemic, these mosquitoes moved further north in the United States, into southern California, and were identified as far north as Washington, D.C.,” said Neil Silverman, MD, professor of clinical obstetrics and gynecology and director of the Infections in Pregnancy Program at UCLA Medical Center in Los Angeles.

“On a population level, Americans have essentially no immunity to Zika from prior infection, and there is no vaccine yet approved. If individuals infected with Zika came into a U.S. region where the Aedes aegypti mosquito was present, that population could be very susceptible to infection spread and even another outbreak. This would be a confluence of bad circumstances, but that’s exactly what infectious disease specialists continue to be watchful about, especially because Zika is so dangerous for fetuses,” said Dr. Silverman.
 

How the public can prepare

The CDC recommends that pregnant women or women who plan to become pregnant avoid traveling to regions where there are currently outbreaks of Zika, but this is not the only way that individuals can protect themselves.

“The message we want to deliver to people is that in the United States, people are at risk for several mosquito-borne diseases every summer beyond just Zika,” Dr. Staples said. “It’s really important that people are instructed to make a habit of wearing EPA [U.S. Environmental Protection Agency)–registered insect repellents when they go outside. Right now, that is the single best tool that we have to prevent mosquito-borne diseases in the U.S.

“From a community standpoint, there are several emerging mosquito control methods that are being evaluated right now, such as genetic modification and irradiation of mosquitoes. These methods are aimed at producing sterile mosquitoes that are released into the wild to mate with the local mosquito population, which will render them infertile. This leads, over time, to suppression of the overall Aedes aegypti mosquito population – the main vector of Zika transmission,” said Dr. Staples.

Monica Gandhi, MD, MPH, professor of medicine and associate chief of the division of HIV, infectious diseases, and global medicine at the University of California, San Francisco, encourages her patients to wear mosquito repellent but cautioned that “there’s no antiviral that you can take for Zika. Until we have a vaccine, the key to controlling/preventing Zika is controlling the mosquitoes that spread the virus.”
 

 

 

Vaccines

The National Institute of Allergy and Infectious Diseases (NIAID) is currently investigating a variety of Zika vaccines, including a DNA-based vaccine, (phase 2), a purified inactivated virus vaccine (phase 1), live attenuated vaccines (phase 2), and mRNA vaccines (phase 2).

“I’m most excited about mRNA vaccines because they help patients produce a lot of proteins. The protein from a typical protein-adjuvant vaccine will break down, and patients can only raise an immune response to whatever proteins are left. On the other hand, mRNA vaccines provide the body [with] a recipe to make the protein from the pathogen in high amounts, so that a strong immune response can be raised for protection,” noted Dr. Gandhi.

Moderna’s mRNA-1893 vaccine was recently studied in a randomized, observer-blind, controlled, phase 1 trial among 120 adults in the United States and Puerto Rico, the results of which were published online in The Lancet. “The vaccine was found to be generally well tolerated with no serious adverse events considered related to vaccine. Furthermore, the vaccine was able to generate a potent immune response that was capable of neutralizing the virus in vitro,” said Brett Leav, MD, executive director of clinical development for public health vaccines at Moderna.

“Our mRNA platform technology ... can be very helpful against emerging pandemic threats, as we saw in response to COVID-19. What is unique in our approach is that if the genetic sequence of the virus is known, we can quickly generate vaccines to test for their capability to generate a functional immune response. In the case of the mRNA-1893 trial, the vaccine was developed with antigens that were present in the strain of virus circulating in 2016, but we could easily match whatever strain reemerges,” said Dr. Leav.

A phase 2 trial to confirm the dose of mRNA-1893 in a larger study population is underway.

Although it’s been demonstrated that Moderna’s mRNA vaccine is safe and effective, moving from a phase 2 to a phase 3 study presents a challenge, given the fact that currently, the disease burden from Zika is low. If an outbreak were to occur in the future, these mRNA vaccines could potentially be given emergency approval, as occurred during the COVID pandemic, according to Dr. Silverman.

If approved, provisionally or through a traditional route, the vaccine would “accelerate the ability to tamp down any further outbreaks, because vaccine-based immunity could be made available to a large portion of the population who were pregnant or planning a pregnancy, not just in the U.S. but also in these endemic areas,” said Dr. Silverman.


 

Takeaways from the last Zika outbreak

Practical steps such as mosquito eradication and development of vaccines are not the only takeaway from the recent Zika epidemics inside and outside the United States. A clearer picture of the short- and long-term stakes of the disease has emerged.

According to the CDC, most people who become infected with Zika experience only mild symptoms, such as fever, rash, headache, and muscle pain, but babies conceived by mothers infected with Zika are at risk for stillbirth, miscarriage, and microcephaly and other brain defects.

Although a pregnant woman who tests positive for Zika is in a very high-risk situation, “data show that only about 30% of mothers with Zika have a baby with birth defects. If a pregnant woman contracted Zika, what would happen is we would just do very close screening by ultrasound of the fetus. If microcephaly in utero or fetal brain defects were observed, then a mother would be counseled on her options,” said Dr. Gandhi.

Dr. Silverman noted that “new data on children who were exposed in utero and had normal exams, including head measurements when they were born, have raised concerns. In recently published long-term follow-up studies, even when children born to mothers infected with Zika during pregnancy had normal head growth at least 3 years after birth, they were still at risk for neurodevelopmental delay and behavioral disorders, including impact on coordination and executive function.

“This is another good reason to keep the potential risks of Zika active in the public’s consciousness and in public health planning.”

Dr. Silverman, Dr. Gandhi, and Dr. Staples have disclosed no relevant financial relationships. Dr. Leav is an employee of Moderna and owns stock in the company.

A version of this article originally appeared on Medscape.com.

Publications
Publications
Topics
Article Type
Sections
Teambase XML
<?xml version="1.0" encoding="UTF-8"?>
<!--$RCSfile: InCopy_agile.xsl,v $ $Revision: 1.35 $-->
<!--$RCSfile: drupal.xsl,v $ $Revision: 1.7 $-->
<root generator="drupal.xsl" gversion="1.7"> <header> <fileName>162300</fileName> <TBEID>0C04882A.SIG</TBEID> <TBUniqueIdentifier>MD_0C04882A</TBUniqueIdentifier> <newsOrJournal>News</newsOrJournal> <publisherName>Frontline Medical Communications</publisherName> <storyname/> <articleType>2</articleType> <TBLocation>QC Done-All Pubs</TBLocation> <QCDate>20230222T103850</QCDate> <firstPublished>20230222T104348</firstPublished> <LastPublished>20230222T104348</LastPublished> <pubStatus qcode="stat:"/> <embargoDate/> <killDate/> <CMSDate>20230222T104348</CMSDate> <articleSource/> <facebookInfo/> <meetingNumber/> <byline>Myles Starr</byline> <bylineText>MYLES STARR</bylineText> <bylineFull>MYLES STARR</bylineFull> <bylineTitleText/> <USOrGlobal/> <wireDocType/> <newsDocType/> <journalDocType/> <linkLabel/> <pageRange/> <citation/> <quizID/> <indexIssueDate/> <itemClass qcode="ninat:text"/> <provider qcode="provider:imng"> <name>IMNG Medical Media</name> <rightsInfo> <copyrightHolder> <name>Frontline Medical News</name> </copyrightHolder> <copyrightNotice>Copyright (c) 2015 Frontline Medical News, a Frontline Medical Communications Inc. company. All rights reserved. This material may not be published, broadcast, copied, or otherwise reproduced or distributed without the prior written permission of Frontline Medical Communications Inc.</copyrightNotice> </rightsInfo> </provider> <abstract/> <metaDescription>Warming U.S. temperatures, the resumption of travel, and new knowledge about Zika’s long-term effects on children signal that Zika prevention and vaccine develo</metaDescription> <articlePDF/> <teaserImage/> <teaser>“There’s no antiviral that you can take for Zika. Until we have a vaccine, the key to controlling/preventing Zika is controlling the mosquitoes that spread the virus.”</teaser> <title>Zika virus still calls for preparedness and vaccine development</title> <deck/> <disclaimer/> <AuthorList/> <articleURL/> <doi/> <pubMedID/> <publishXMLStatus/> <publishXMLVersion>1</publishXMLVersion> <useEISSN>0</useEISSN> <urgency/> <pubPubdateYear/> <pubPubdateMonth/> <pubPubdateDay/> <pubVolume/> <pubNumber/> <wireChannels/> <primaryCMSID/> <CMSIDs/> <keywords/> <seeAlsos/> <publications_g> <publicationData> <publicationCode>skin</publicationCode> <pubIssueName/> <pubArticleType/> <pubTopics/> <pubCategories/> <pubSections/> </publicationData> <publicationData> <publicationCode>fp</publicationCode> <pubIssueName/> <pubArticleType/> <pubTopics/> <pubCategories/> <pubSections/> </publicationData> <publicationData> <publicationCode>idprac</publicationCode> <pubIssueName/> <pubArticleType/> <pubTopics/> <pubCategories/> <pubSections/> </publicationData> <publicationData> <publicationCode>im</publicationCode> <pubIssueName/> <pubArticleType/> <pubTopics/> <pubCategories/> <pubSections/> </publicationData> <publicationData> <publicationCode>ob</publicationCode> <pubIssueName/> <pubArticleType/> <pubTopics/> <pubCategories/> <pubSections/> </publicationData> </publications_g> <publications> <term>13</term> <term>15</term> <term>20</term> <term>21</term> <term canonical="true">23</term> </publications> <sections> <term>37225</term> <term canonical="true">39313</term> </sections> <topics> <term>234</term> <term>322</term> <term>311</term> <term canonical="true">27923</term> </topics> <links/> </header> <itemSet> <newsItem> <itemMeta> <itemRole>Main</itemRole> <itemClass>text</itemClass> <title>Zika virus still calls for preparedness and vaccine development</title> <deck/> </itemMeta> <itemContent> <p>Warming U.S. temperatures, the resumption of travel, and new knowledge about <span class="Hyperlink"><a href="https://emedicine.medscape.com/article/2500035-overview">Zika</a></span>’s long-term effects on children signal that Zika prevention and vaccine development should be on public health officials’, doctors’, and communities’ radar, even when community infection is not occurring.</p> <p>“Although we haven’t seen confirmed Zika virus circulation in the continental United States or its territories for several years, it’s still something that we are closely monitoring, particularly as we move into the summer months,” Erin Staples, MD, PhD, medical epidemiologist at the Arboviral Diseases Branch of the Centers for Disease Control and Prevention in Fort Collins, Colo., told this news organization.<br/><br/>“This is because cases are still being reported in other countries, particularly in South America. Travel to these places is increasing following the pandemic, leaving more potential for individuals who might have acquired the infection to come back and restart community transmission.”<br/><br/></p> <h2>How Zika might reemerge</h2> <p>The Aedes aegypti mosquito is the vector by which Zika spreads, and “during the COVID pandemic, these mosquitoes moved further north in the United States, into southern California, and were identified as far north as Washington, D.C.,” said Neil Silverman, MD, professor of clinical obstetrics and gynecology and director of the Infections in Pregnancy Program at UCLA Medical Center in Los Angeles.</p> <p>“On a population level, Americans have essentially no immunity to Zika from prior infection, and there is no vaccine yet approved. If individuals infected with Zika came into a U.S. region where the Aedes aegypti mosquito was present, that population could be very susceptible to infection spread and even another outbreak. This would be a confluence of bad circumstances, but that’s exactly what infectious disease specialists continue to be watchful about, especially because Zika is so dangerous for fetuses,” said Dr. Silverman.<br/><br/></p> <h2>How the public can prepare</h2> <p>The CDC recommends that pregnant women or women who plan to become pregnant avoid traveling to regions where there are currently outbreaks of Zika, but this is not the only way that individuals can protect themselves.</p> <p>“The message we want to deliver to people is that in the United States, people are at risk for several mosquito-borne diseases every summer beyond just Zika,” Dr. Staples said. “It’s really important that people are instructed to make a habit of wearing EPA [U.S. Environmental Protection Agency)–registered insect repellents when they go outside. Right now, that is the single best tool that we have to prevent mosquito-borne diseases in the U.S.<br/><br/>“From a community standpoint, there are several emerging mosquito control methods that are being evaluated right now, such as genetic modification and irradiation of mosquitoes. These methods are aimed at producing sterile mosquitoes that are released into the wild to mate with the local mosquito population, which will render them infertile. This leads, over time, to suppression of the overall Aedes aegypti mosquito population – the main vector of Zika transmission,” said Dr. Staples.<br/><br/>Monica Gandhi, MD, MPH, professor of medicine and associate chief of the division of HIV, infectious diseases, and global medicine at the University of California, San Francisco, encourages her patients to wear mosquito repellent but cautioned that “there’s no antiviral that you can take for Zika. Until we have a vaccine, the key to controlling/preventing Zika is controlling the mosquitoes that spread the virus.”<br/><br/></p> <h2>Vaccines</h2> <p>The National Institute of Allergy and Infectious Diseases (NIAID) is currently investigating a variety of <span class="Hyperlink"><a href="https://www.niaid.nih.gov/diseases-conditions/zika-vaccines#:~:text=The%20DNA%2Dbased%20Zika%20vaccine,antibody%20response%20against%20Zika%20virus.">Zika vaccines</a></span>, including a DNA-based vaccine, (phase 2), a purified inactivated virus vaccine (phase 1), live attenuated vaccines (phase 2), and mRNA vaccines (phase 2).</p> <p>“I’m most excited about mRNA vaccines because they help patients produce a lot of proteins. The protein from a typical protein-adjuvant vaccine will break down, and patients can only raise an immune response to whatever proteins are left. On the other hand, mRNA vaccines provide the body [with] a recipe to make the protein from the pathogen in high amounts, so that a strong immune response can be raised for protection,” noted Dr. Gandhi.<br/><br/>Moderna’s mRNA-1893 vaccine was recently studied in a randomized, observer-blind, controlled, <span class="Hyperlink"><a href="https://clinicaltrials.gov/ct2/show/NCT04064905?term=mRNA-1893&amp;cond=Zika&amp;draw=2&amp;rank=1">phase 1 trial</a></span> among 120 adults in the United States and Puerto Rico, the results of which were published online in <span class="Hyperlink"><a href="https://www.thelancet.com/journals/laninf/article/PIIS1473-3099(22)00764-2/fulltext">The Lancet</a></span>. “The vaccine was found to be generally well tolerated with no serious adverse events considered related to vaccine. Furthermore, the vaccine was able to generate a potent immune response that was capable of neutralizing the virus in vitro,” said Brett Leav, MD, executive director of clinical development for public health vaccines at Moderna.<br/><br/>“Our mRNA platform technology ... can be very helpful against emerging pandemic threats, as we saw in response to COVID-19. What is unique in our approach is that if the genetic sequence of the virus is known, we can quickly generate vaccines to test for their capability to generate a functional immune response. In the case of the mRNA-1893 trial, the vaccine was developed with antigens that were present in the strain of virus circulating in 2016, but we could easily match whatever strain reemerges,” said Dr. Leav.<br/><br/>A phase 2 trial to confirm the dose of mRNA-1893 in a larger study population is underway.<br/><br/>Although it’s been demonstrated that Moderna’s mRNA vaccine is safe and effective, moving from a phase 2 to a phase 3 study presents a challenge, given the fact that currently, the disease burden from Zika is low. If an outbreak were to occur in the future, these mRNA vaccines could potentially be given emergency approval, as occurred during the COVID pandemic, according to Dr. Silverman.<br/><br/>If approved, provisionally or through a traditional route, the vaccine would “accelerate the ability to tamp down any further outbreaks, because vaccine-based immunity could be made available to a large portion of the population who were pregnant or planning a pregnancy, not just in the U.S. but also in these endemic areas,” said Dr. Silverman.<br/><br/><br/><br/></p> <h2>Takeaways from the last Zika outbreak</h2> <p>Practical steps such as mosquito eradication and development of vaccines are not the only takeaway from the recent Zika epidemics inside and outside the United States. A clearer picture of the short- and long-term stakes of the disease has emerged.</p> <p><span class="Hyperlink"><a href="https://www.cdc.gov/zika/about/overview.html">According to the CDC</a>, </span>most people who become infected with Zika experience only mild symptoms, such as fever, rash, headache, and muscle pain, but babies conceived by mothers infected with Zika are at risk for stillbirth, <span class="Hyperlink">miscarriage</span>, and microcephaly and other brain defects.<br/><br/>Although a pregnant woman who tests positive for Zika is in a very high-risk situation, “data show that only about 30% of mothers with Zika have a baby with birth defects. If a pregnant woman contracted Zika, what would happen is we would just do very close screening by ultrasound of the fetus. If microcephaly in utero or fetal brain defects were observed, then a mother would be counseled on her options,” said Dr. Gandhi.<br/><br/>Dr. Silverman noted that “new data on children who were exposed in utero and had normal exams, including head measurements when they were born, have raised concerns. In recently published long-term follow-up studies, even when children born to mothers infected with Zika during pregnancy had normal head growth at least 3 years after birth, they were still at risk for neurodevelopmental delay and behavioral disorders, including impact on coordination and executive function.<br/><br/>“This is another good reason to keep the potential risks of Zika active in the public’s consciousness and in public health planning.”<br/><br/>Dr. Silverman, Dr. Gandhi, and Dr. Staples have disclosed no relevant financial relationships. Dr. Leav is an employee of Moderna and owns stock in the company.</p> <p> <em>A version of this article originally appeared on <span class="Hyperlink"><a href="https://www.medscape.com/viewarticle/988513">Medscape.com</a></span>.</em> </p> </itemContent> </newsItem> <newsItem> <itemMeta> <itemRole>teaser</itemRole> <itemClass>text</itemClass> <title/> <deck/> </itemMeta> <itemContent> </itemContent> </newsItem> </itemSet></root>
Disallow All Ads
Content Gating
No Gating (article Unlocked/Free)
Alternative CME
Disqus Comments
Default
Use ProPublica
Hide sidebar & use full width
render the right sidebar.
Conference Recap Checkbox
Not Conference Recap
Clinical Edge
Display the Slideshow in this Article
Medscape Article
Display survey writer
Reuters content
Disable Inline Native ads
WebMD Article

Mosquitoes and the vicious circle that’s gone viral

Article Type
Changed
Thu, 07/07/2022 - 09:46

 

These viruses want mosquitoes with good taste

Taste can be a pretty subjective sense. Not everyone agrees on what tastes good and what tastes bad. Most people would agree that freshly baked cookies taste good, but what about lima beans? And what about mosquitoes? What tastes good to a mosquito?

The answer? Blood. Blood tastes good to a mosquito. That really wasn’t a very hard question, was it? You did know the answer, didn’t you? They don’t care about cookies, and they certainly don’t care about lima beans. It’s blood that they love.

mosquito_blood_web.jpg

That brings us back to subjectivity, because it is possible for blood to taste even better. The secret ingredient is dengue … and Zika.

A study just published in Cell demonstrates that mice infected with dengue and Zika viruses release a volatile compound called acetophenone. “We found that flavivirus [like dengue and Zika] can utilize the increased release of acetophenone to help itself achieve its lifecycles more effectively by making their hosts more attractive to mosquito vectors,” senior author Gong Cheng of Tsinghua University, Beijing, said in a written statement.

How do they do it? The viruses, he explained, promote the proliferation of acetophenone-producing skin bacteria. “As a result, some bacteria overreplicate and produce more acetophenone. Suddenly, these sick individuals smell as delicious to mosquitoes as a tray of freshly baked cookies to a group of five-year-old children,” the statement said.

And how do you stop a group of tiny, flying 5-year-olds? That’s right, with acne medication. Really? You knew that one but not the blood one before? The investigators fed isotretinoin to the infected mice, which led to reduced acetophenone release from skin bacteria and made the animals no more attractive to the mosquitoes than their uninfected counterparts.

The investigators are planning to take the next step – feeding isotretinoin to people with dengue and Zika – having gotten the official fictional taste-test approval of celebrity chef Gordon Ramsay, who said, “You’re going to feed this #$^% to sick people? ARE YOU &%*$@#& KIDDING ME?”

Okay, so maybe approval isn’t quite the right word.
 

Welcome to bladders of the rich and famous!

Don’t you hate it when you’re driving out to your multimillion-dollar second home in the Hamptons and traffic is so bad you absolutely have to find a place to “rest” along the way? But wouldn’t you know it, there just isn’t anywhere to stop! Geez, how do we live?

That’s where David Shusterman, MD, a urologist in New York City and a true American hero, comes in. He’s identified a market and positioned himself as the king of both bladder surgery and “bladder Botox” for the wealthy New Yorkers who regularly make long journeys from the city out to their second homes in the Hamptons. Traffic has increased dramatically on Long Island roads in recent years, and the journey can now taking upward of 4 hours. Some people just can’t make it that long without a bathroom break, and there are very few places to stop along the way.

traffic_cars_web.jpg

Dr. Shusterman understands the plight of the Hamptons vacationer, as he told Insider.com: “I can’t tell you how many arguments I personally get into – I’ve lost three friends because I’m the driver and refuse to stop for them.” A tragedy worthy of Shakespeare himself.

During the summer season, Dr. Shusterman performs about 10 prostate artery embolizations a week, an hour-long procedure that shrinks the prostate, which is great for 50- to 60-year-old men with enlarged prostates that cause more frequent bathroom trips. He also performs Botox injections into the bladder once or twice a week for women, which reduces the need to urinate for roughly 6 months. The perfect amount of time to get them through the summer season.

These procedures are sometimes covered by insurance but can cost as much as $20,000 if paid out of pocket. That’s a lot of money to us, but if you’re the sort of person who has a second home in the Hamptons, $20,000 is chump change, especially if it means you won’t have to go 2 entire minutes out of your way to use a gas-station bathroom. Then again, having seen a more than a few gas-station bathrooms in our time, maybe they have a point.
 

 

 

Ditch the apples. Go for the avocados

We’ve all heard about “an apple a day,” but instead of apples you might want to go with avocados.

avocado_web.jpg

Avocados are generally thought to be a healthy fat. A study just published in the Journal of the American Heart Association proves that they actually don’t do anything for your waistline but will work wonders on your cholesterol level. The study involved 923 participants who were considered overweight/obese split into two groups: One was asked to consume an avocado a day, and the other continued their usual diets and were asked to consume fewer than two avocados a month.

At the end of the 6 months, the researchers found total cholesterol decreased by an additional 2.9 mg/dL and LDL cholesterol by 2.5 mg/dL in those who ate one avocado every day, compared with the usual-diet group. And even though avocados have a lot of calories, there was no clinical evidence that it impacted weight gain or any cardiometabolic risk factors, according to a statement from Penn State University.

Avocados, then, can be considered a guilt-free food. The findings from this study suggest it can give a substantial boost to your overall quality of diet, in turn lessening your risk of developing type 2 diabetes and some cancers, Kristina Peterson, PhD, assistant professor of nutritional sciences at Texas Tech University, said in the statement.

So get creative with your avocado recipes. You can only eat so much guacamole.
 

Your nose knows a good friend for you

You’ve probably noticed how dogs sniff other dogs and people before becoming friends. It would be pretty comical if people did the same thing, right? Just walked up to strangers and started sniffing them like dogs?

Well, apparently humans do go by smell when it comes to making friends, and they prefer people who smell like them. Maybe you’ve noticed that your friends look like you, share your values, and think the same way as you. You’re probably right, seeing as previous research has pointed to this.

For the current study, done to show how smell affects human behavior, researchers recruited people who befriended each other quickly, before knowing much about each other. They assumed that the relationships between these same-sex, nonromantic “click friends” relied more on physiological traits, including smell. After collecting samples from the click friends, researchers used an eNose to scan chemical signatures. In another experiment, human volunteers sniffed samples to determine if any were similar. Both experiments showed that click friends had more similar smells than pairs of random people.

nose_electronic_web.jpg
The eNose does its thing.


“This is not to say that we act like goats or shrews – humans likely rely on other, far more dominant cues in their social decision-making. Nevertheless, our study’s results do suggest that our nose plays a bigger role than previously thought in our choice of friends,” said senior author Noam Sobel, PhD, of the Weizmann Institute of Science in Rehovot, Israel.

Lead author Inbal Ravreby, a graduate student at the institute, put it this way: “These results imply that, as the saying goes, there is chemistry in social chemistry.”

Publications
Topics
Sections

 

These viruses want mosquitoes with good taste

Taste can be a pretty subjective sense. Not everyone agrees on what tastes good and what tastes bad. Most people would agree that freshly baked cookies taste good, but what about lima beans? And what about mosquitoes? What tastes good to a mosquito?

The answer? Blood. Blood tastes good to a mosquito. That really wasn’t a very hard question, was it? You did know the answer, didn’t you? They don’t care about cookies, and they certainly don’t care about lima beans. It’s blood that they love.

mosquito_blood_web.jpg

That brings us back to subjectivity, because it is possible for blood to taste even better. The secret ingredient is dengue … and Zika.

A study just published in Cell demonstrates that mice infected with dengue and Zika viruses release a volatile compound called acetophenone. “We found that flavivirus [like dengue and Zika] can utilize the increased release of acetophenone to help itself achieve its lifecycles more effectively by making their hosts more attractive to mosquito vectors,” senior author Gong Cheng of Tsinghua University, Beijing, said in a written statement.

How do they do it? The viruses, he explained, promote the proliferation of acetophenone-producing skin bacteria. “As a result, some bacteria overreplicate and produce more acetophenone. Suddenly, these sick individuals smell as delicious to mosquitoes as a tray of freshly baked cookies to a group of five-year-old children,” the statement said.

And how do you stop a group of tiny, flying 5-year-olds? That’s right, with acne medication. Really? You knew that one but not the blood one before? The investigators fed isotretinoin to the infected mice, which led to reduced acetophenone release from skin bacteria and made the animals no more attractive to the mosquitoes than their uninfected counterparts.

The investigators are planning to take the next step – feeding isotretinoin to people with dengue and Zika – having gotten the official fictional taste-test approval of celebrity chef Gordon Ramsay, who said, “You’re going to feed this #$^% to sick people? ARE YOU &%*$@#& KIDDING ME?”

Okay, so maybe approval isn’t quite the right word.
 

Welcome to bladders of the rich and famous!

Don’t you hate it when you’re driving out to your multimillion-dollar second home in the Hamptons and traffic is so bad you absolutely have to find a place to “rest” along the way? But wouldn’t you know it, there just isn’t anywhere to stop! Geez, how do we live?

That’s where David Shusterman, MD, a urologist in New York City and a true American hero, comes in. He’s identified a market and positioned himself as the king of both bladder surgery and “bladder Botox” for the wealthy New Yorkers who regularly make long journeys from the city out to their second homes in the Hamptons. Traffic has increased dramatically on Long Island roads in recent years, and the journey can now taking upward of 4 hours. Some people just can’t make it that long without a bathroom break, and there are very few places to stop along the way.

traffic_cars_web.jpg

Dr. Shusterman understands the plight of the Hamptons vacationer, as he told Insider.com: “I can’t tell you how many arguments I personally get into – I’ve lost three friends because I’m the driver and refuse to stop for them.” A tragedy worthy of Shakespeare himself.

During the summer season, Dr. Shusterman performs about 10 prostate artery embolizations a week, an hour-long procedure that shrinks the prostate, which is great for 50- to 60-year-old men with enlarged prostates that cause more frequent bathroom trips. He also performs Botox injections into the bladder once or twice a week for women, which reduces the need to urinate for roughly 6 months. The perfect amount of time to get them through the summer season.

These procedures are sometimes covered by insurance but can cost as much as $20,000 if paid out of pocket. That’s a lot of money to us, but if you’re the sort of person who has a second home in the Hamptons, $20,000 is chump change, especially if it means you won’t have to go 2 entire minutes out of your way to use a gas-station bathroom. Then again, having seen a more than a few gas-station bathrooms in our time, maybe they have a point.
 

 

 

Ditch the apples. Go for the avocados

We’ve all heard about “an apple a day,” but instead of apples you might want to go with avocados.

avocado_web.jpg

Avocados are generally thought to be a healthy fat. A study just published in the Journal of the American Heart Association proves that they actually don’t do anything for your waistline but will work wonders on your cholesterol level. The study involved 923 participants who were considered overweight/obese split into two groups: One was asked to consume an avocado a day, and the other continued their usual diets and were asked to consume fewer than two avocados a month.

At the end of the 6 months, the researchers found total cholesterol decreased by an additional 2.9 mg/dL and LDL cholesterol by 2.5 mg/dL in those who ate one avocado every day, compared with the usual-diet group. And even though avocados have a lot of calories, there was no clinical evidence that it impacted weight gain or any cardiometabolic risk factors, according to a statement from Penn State University.

Avocados, then, can be considered a guilt-free food. The findings from this study suggest it can give a substantial boost to your overall quality of diet, in turn lessening your risk of developing type 2 diabetes and some cancers, Kristina Peterson, PhD, assistant professor of nutritional sciences at Texas Tech University, said in the statement.

So get creative with your avocado recipes. You can only eat so much guacamole.
 

Your nose knows a good friend for you

You’ve probably noticed how dogs sniff other dogs and people before becoming friends. It would be pretty comical if people did the same thing, right? Just walked up to strangers and started sniffing them like dogs?

Well, apparently humans do go by smell when it comes to making friends, and they prefer people who smell like them. Maybe you’ve noticed that your friends look like you, share your values, and think the same way as you. You’re probably right, seeing as previous research has pointed to this.

For the current study, done to show how smell affects human behavior, researchers recruited people who befriended each other quickly, before knowing much about each other. They assumed that the relationships between these same-sex, nonromantic “click friends” relied more on physiological traits, including smell. After collecting samples from the click friends, researchers used an eNose to scan chemical signatures. In another experiment, human volunteers sniffed samples to determine if any were similar. Both experiments showed that click friends had more similar smells than pairs of random people.

nose_electronic_web.jpg
The eNose does its thing.


“This is not to say that we act like goats or shrews – humans likely rely on other, far more dominant cues in their social decision-making. Nevertheless, our study’s results do suggest that our nose plays a bigger role than previously thought in our choice of friends,” said senior author Noam Sobel, PhD, of the Weizmann Institute of Science in Rehovot, Israel.

Lead author Inbal Ravreby, a graduate student at the institute, put it this way: “These results imply that, as the saying goes, there is chemistry in social chemistry.”

 

These viruses want mosquitoes with good taste

Taste can be a pretty subjective sense. Not everyone agrees on what tastes good and what tastes bad. Most people would agree that freshly baked cookies taste good, but what about lima beans? And what about mosquitoes? What tastes good to a mosquito?

The answer? Blood. Blood tastes good to a mosquito. That really wasn’t a very hard question, was it? You did know the answer, didn’t you? They don’t care about cookies, and they certainly don’t care about lima beans. It’s blood that they love.

mosquito_blood_web.jpg

That brings us back to subjectivity, because it is possible for blood to taste even better. The secret ingredient is dengue … and Zika.

A study just published in Cell demonstrates that mice infected with dengue and Zika viruses release a volatile compound called acetophenone. “We found that flavivirus [like dengue and Zika] can utilize the increased release of acetophenone to help itself achieve its lifecycles more effectively by making their hosts more attractive to mosquito vectors,” senior author Gong Cheng of Tsinghua University, Beijing, said in a written statement.

How do they do it? The viruses, he explained, promote the proliferation of acetophenone-producing skin bacteria. “As a result, some bacteria overreplicate and produce more acetophenone. Suddenly, these sick individuals smell as delicious to mosquitoes as a tray of freshly baked cookies to a group of five-year-old children,” the statement said.

And how do you stop a group of tiny, flying 5-year-olds? That’s right, with acne medication. Really? You knew that one but not the blood one before? The investigators fed isotretinoin to the infected mice, which led to reduced acetophenone release from skin bacteria and made the animals no more attractive to the mosquitoes than their uninfected counterparts.

The investigators are planning to take the next step – feeding isotretinoin to people with dengue and Zika – having gotten the official fictional taste-test approval of celebrity chef Gordon Ramsay, who said, “You’re going to feed this #$^% to sick people? ARE YOU &%*$@#& KIDDING ME?”

Okay, so maybe approval isn’t quite the right word.
 

Welcome to bladders of the rich and famous!

Don’t you hate it when you’re driving out to your multimillion-dollar second home in the Hamptons and traffic is so bad you absolutely have to find a place to “rest” along the way? But wouldn’t you know it, there just isn’t anywhere to stop! Geez, how do we live?

That’s where David Shusterman, MD, a urologist in New York City and a true American hero, comes in. He’s identified a market and positioned himself as the king of both bladder surgery and “bladder Botox” for the wealthy New Yorkers who regularly make long journeys from the city out to their second homes in the Hamptons. Traffic has increased dramatically on Long Island roads in recent years, and the journey can now taking upward of 4 hours. Some people just can’t make it that long without a bathroom break, and there are very few places to stop along the way.

traffic_cars_web.jpg

Dr. Shusterman understands the plight of the Hamptons vacationer, as he told Insider.com: “I can’t tell you how many arguments I personally get into – I’ve lost three friends because I’m the driver and refuse to stop for them.” A tragedy worthy of Shakespeare himself.

During the summer season, Dr. Shusterman performs about 10 prostate artery embolizations a week, an hour-long procedure that shrinks the prostate, which is great for 50- to 60-year-old men with enlarged prostates that cause more frequent bathroom trips. He also performs Botox injections into the bladder once or twice a week for women, which reduces the need to urinate for roughly 6 months. The perfect amount of time to get them through the summer season.

These procedures are sometimes covered by insurance but can cost as much as $20,000 if paid out of pocket. That’s a lot of money to us, but if you’re the sort of person who has a second home in the Hamptons, $20,000 is chump change, especially if it means you won’t have to go 2 entire minutes out of your way to use a gas-station bathroom. Then again, having seen a more than a few gas-station bathrooms in our time, maybe they have a point.
 

 

 

Ditch the apples. Go for the avocados

We’ve all heard about “an apple a day,” but instead of apples you might want to go with avocados.

avocado_web.jpg

Avocados are generally thought to be a healthy fat. A study just published in the Journal of the American Heart Association proves that they actually don’t do anything for your waistline but will work wonders on your cholesterol level. The study involved 923 participants who were considered overweight/obese split into two groups: One was asked to consume an avocado a day, and the other continued their usual diets and were asked to consume fewer than two avocados a month.

At the end of the 6 months, the researchers found total cholesterol decreased by an additional 2.9 mg/dL and LDL cholesterol by 2.5 mg/dL in those who ate one avocado every day, compared with the usual-diet group. And even though avocados have a lot of calories, there was no clinical evidence that it impacted weight gain or any cardiometabolic risk factors, according to a statement from Penn State University.

Avocados, then, can be considered a guilt-free food. The findings from this study suggest it can give a substantial boost to your overall quality of diet, in turn lessening your risk of developing type 2 diabetes and some cancers, Kristina Peterson, PhD, assistant professor of nutritional sciences at Texas Tech University, said in the statement.

So get creative with your avocado recipes. You can only eat so much guacamole.
 

Your nose knows a good friend for you

You’ve probably noticed how dogs sniff other dogs and people before becoming friends. It would be pretty comical if people did the same thing, right? Just walked up to strangers and started sniffing them like dogs?

Well, apparently humans do go by smell when it comes to making friends, and they prefer people who smell like them. Maybe you’ve noticed that your friends look like you, share your values, and think the same way as you. You’re probably right, seeing as previous research has pointed to this.

For the current study, done to show how smell affects human behavior, researchers recruited people who befriended each other quickly, before knowing much about each other. They assumed that the relationships between these same-sex, nonromantic “click friends” relied more on physiological traits, including smell. After collecting samples from the click friends, researchers used an eNose to scan chemical signatures. In another experiment, human volunteers sniffed samples to determine if any were similar. Both experiments showed that click friends had more similar smells than pairs of random people.

nose_electronic_web.jpg
The eNose does its thing.


“This is not to say that we act like goats or shrews – humans likely rely on other, far more dominant cues in their social decision-making. Nevertheless, our study’s results do suggest that our nose plays a bigger role than previously thought in our choice of friends,” said senior author Noam Sobel, PhD, of the Weizmann Institute of Science in Rehovot, Israel.

Lead author Inbal Ravreby, a graduate student at the institute, put it this way: “These results imply that, as the saying goes, there is chemistry in social chemistry.”

Publications
Publications
Topics
Article Type
Sections
Teambase XML
<?xml version="1.0" encoding="UTF-8"?>
<!--$RCSfile: InCopy_agile.xsl,v $ $Revision: 1.35 $-->
<!--$RCSfile: drupal.xsl,v $ $Revision: 1.7 $-->
<root generator="drupal.xsl" gversion="1.7"> <header> <fileName>158871</fileName> <TBEID>0C043B36.SIG</TBEID> <TBUniqueIdentifier>MD_0C043B36</TBUniqueIdentifier> <newsOrJournal>News</newsOrJournal> <publisherName>Frontline Medical Communications</publisherName> <storyname/> <articleType>2</articleType> <TBLocation>QC Done-All Pubs</TBLocation> <QCDate>20220707T093017</QCDate> <firstPublished>20220707T093657</firstPublished> <LastPublished>20220707T093657</LastPublished> <pubStatus qcode="stat:"/> <embargoDate/> <killDate/> <CMSDate>20220707T093657</CMSDate> <articleSource/> <facebookInfo/> <meetingNumber/> <byline>Lucas Franki</byline> <bylineText>LUCAS FRANKI, RICHARD FRANKI, CHRISTINA MANAGO, AND TERAYA SMITH</bylineText> <bylineFull>LUCAS FRANKI, RICHARD FRANKI, CHRISTINA MANAGO, AND TERAYA SMITH</bylineFull> <bylineTitleText>MDedge News</bylineTitleText> <USOrGlobal/> <wireDocType/> <newsDocType>Column</newsDocType> <journalDocType/> <linkLabel/> <pageRange/> <citation/> <quizID/> <indexIssueDate/> <itemClass qcode="ninat:text"/> <provider qcode="provider:imng"> <name>IMNG Medical Media</name> <rightsInfo> <copyrightHolder> <name>Frontline Medical News</name> </copyrightHolder> <copyrightNotice>Copyright (c) 2015 Frontline Medical News, a Frontline Medical Communications Inc. company. All rights reserved. This material may not be published, broadcast, copied, or otherwise reproduced or distributed without the prior written permission of Frontline Medical Communications Inc.</copyrightNotice> </rightsInfo> </provider> <abstract/> <metaDescription>Taste can be a pretty subjective sense. Not everyone agrees on what tastes good and what tastes bad. Most people would agree that freshly baked cookies taste go</metaDescription> <articlePDF/> <teaserImage>287657</teaserImage> <teaser>Plus: The battle against “Hamptons bladder,” the benefits of avocados, and the friendly way to follow your nose.</teaser> <title>Mosquitoes and the vicious circle that’s gone viral</title> <deck/> <disclaimer/> <AuthorList/> <articleURL/> <doi/> <pubMedID/> <publishXMLStatus/> <publishXMLVersion>1</publishXMLVersion> <useEISSN>0</useEISSN> <urgency/> <pubPubdateYear/> <pubPubdateMonth/> <pubPubdateDay/> <pubVolume/> <pubNumber/> <wireChannels/> <primaryCMSID/> <CMSIDs/> <keywords/> <seeAlsos/> <publications_g> <publicationData> <publicationCode>im</publicationCode> <pubIssueName/> <pubArticleType/> <pubTopics/> <pubCategories/> <pubSections/> </publicationData> <publicationData> <publicationCode>chph</publicationCode> <pubIssueName/> <pubArticleType/> <pubTopics/> <pubCategories/> <pubSections/> </publicationData> <publicationData> <publicationCode>card</publicationCode> <pubIssueName/> <pubArticleType/> <pubTopics/> <pubCategories/> <pubSections/> </publicationData> <publicationData> <publicationCode>endo</publicationCode> <pubIssueName/> <pubArticleType/> <pubTopics/> <pubCategories/> <pubSections/> </publicationData> <publicationData> <publicationCode>cpn</publicationCode> <pubIssueName/> <pubArticleType/> <pubTopics/> <pubCategories/> <pubSections/> </publicationData> <publicationData> <publicationCode>skin</publicationCode> <pubIssueName/> <pubArticleType/> <pubTopics/> <pubCategories/> <pubSections/> </publicationData> <publicationData> <publicationCode>fp</publicationCode> <pubIssueName/> <pubArticleType/> <pubTopics/> <pubCategories/> <pubSections/> </publicationData> <publicationData> <publicationCode>hemn</publicationCode> <pubIssueName/> <pubArticleType/> <pubTopics/> <pubCategories/> <pubSections/> </publicationData> <publicationData> <publicationCode>idprac</publicationCode> <pubIssueName/> <pubArticleType/> <pubTopics/> <pubCategories/> <pubSections/> </publicationData> <publicationData> <publicationCode>mdemed</publicationCode> <pubIssueName/> <pubArticleType/> <pubTopics/> <pubCategories/> <pubSections/> <journalTitle/> <journalFullTitle/> <copyrightStatement/> </publicationData> <publicationData> <publicationCode>mdsurg</publicationCode> <pubIssueName/> <pubArticleType/> <pubTopics/> <pubCategories/> <pubSections/> <journalTitle/> <journalFullTitle/> <copyrightStatement>2018 Frontline Medical Communications Inc.,</copyrightStatement> </publicationData> <publicationData> <publicationCode>nr</publicationCode> <pubIssueName/> <pubArticleType/> <pubTopics/> <pubCategories/> <pubSections/> <journalTitle>Neurology Reviews</journalTitle> <journalFullTitle>Neurology Reviews</journalFullTitle> <copyrightStatement>2018 Frontline Medical Communications Inc.,</copyrightStatement> </publicationData> <publicationData> <publicationCode>ob</publicationCode> <pubIssueName/> <pubArticleType/> <pubTopics/> <pubCategories/> <pubSections/> </publicationData> <publicationData> <publicationCode>oncr</publicationCode> <pubIssueName/> <pubArticleType/> <pubTopics/> <pubCategories/> <pubSections/> </publicationData> <publicationData> <publicationCode>pn</publicationCode> <pubIssueName/> <pubArticleType/> <pubTopics/> <pubCategories/> <pubSections/> </publicationData> <publicationData> <publicationCode>rn</publicationCode> <pubIssueName/> <pubArticleType/> <pubTopics/> <pubCategories/> <pubSections/> </publicationData> </publications_g> <publications> <term canonical="true">21</term> <term>6</term> <term>5</term> <term>34</term> <term>9</term> <term>13</term> <term>15</term> <term>18</term> <term>20</term> <term>58877</term> <term>52226</term> <term>22</term> <term>23</term> <term>31</term> <term>25</term> <term>26</term> </publications> <sections> <term canonical="true">51718</term> <term>27980</term> </sections> <topics> <term canonical="true">51510</term> <term>27442</term> <term>27923</term> <term>342</term> </topics> <links> <link> <itemClass qcode="ninat:picture"/> <altRep contenttype="image/jpeg">images/24010f02.jpg</altRep> <description role="drol:caption"/> <description role="drol:credit">©Mathisa_s/ThinkStock</description> </link> <link> <itemClass qcode="ninat:picture"/> <altRep contenttype="image/jpeg">images/24010f03.jpg</altRep> <description role="drol:caption"/> <description role="drol:credit">National Park Service/Rawpixel</description> </link> <link> <itemClass qcode="ninat:picture"/> <altRep contenttype="image/jpeg">images/2400ca2e.jpg</altRep> <description role="drol:caption"/> <description role="drol:credit">tookapic/Pixabay</description> </link> <link> <itemClass qcode="ninat:picture"/> <altRep contenttype="image/jpeg">images/24010f01.jpg</altRep> <description role="drol:caption">The eNose does its thing.</description> <description role="drol:credit">Weizmann Institute of Science</description> </link> </links> </header> <itemSet> <newsItem> <itemMeta> <itemRole>Main</itemRole> <itemClass>text</itemClass> <title>Mosquitoes and the vicious circle that’s gone viral</title> <deck/> </itemMeta> <itemContent> <h2>These viruses want mosquitoes with good taste</h2> <p>Taste can be a pretty subjective sense. Not everyone agrees on what tastes good and what tastes bad. Most people would agree that freshly baked cookies taste good, but what about lima beans? And what about mosquitoes? What tastes good to a mosquito? </p> <p>The answer? Blood. Blood tastes good to a mosquito. That really wasn’t a very hard question, was it? You <em>did</em> know the answer, didn’t you? They don’t care about cookies, and they certainly don’t care about lima beans. It’s blood that they love.<br/><br/>[[{"fid":"287657","view_mode":"medstat_image_flush_left","fields":{"format":"medstat_image_flush_left","field_file_image_alt_text[und][0][value]":"mosquito","field_file_image_credit[und][0][value]":"©Mathisa_s/ThinkStock","field_file_image_caption[und][0][value]":""},"type":"media","attributes":{"class":"media-element file-medstat_image_flush_left"}}]]That brings us back to subjectivity, because it is possible for blood to taste even better. The secret ingredient is dengue … and Zika. <br/><br/>A study just <span class="Hyperlink"><a href="https://www.sciencedirect.com/science/article/abs/pii/S0092867422006419">published in Cell</a></span> demonstrates that mice infected with dengue and Zika viruses release a volatile compound called acetophenone. “We found that flavivirus [like dengue and Zika] can utilize the increased release of acetophenone to help itself achieve its lifecycles more effectively by making their hosts more attractive to mosquito vectors,” senior author Gong Cheng of Tsinghua University, Beijing, <span class="Hyperlink"><a href="https://www.eurekalert.org/news-releases/956635">said in a written statement</a></span>.<br/><br/>How do they do it? The viruses, he explained, promote the proliferation of acetophenone-producing skin bacteria. “As a result, some bacteria overreplicate and produce more acetophenone. Suddenly, these sick individuals smell as delicious to mosquitoes as a tray of freshly baked cookies to a group of five-year-old children,” the statement said.<br/><br/>And how do you stop a group of tiny, flying 5-year-olds? That’s right, with acne medication. Really? You knew that one but not the blood one before? The investigators fed isotretinoin to the infected mice, which led to reduced acetophenone release from skin bacteria and made the animals no more attractive to the mosquitoes than their uninfected counterparts.<br/><br/>The investigators are planning to take the next step – feeding isotretinoin to people with dengue and Zika – having gotten the official fictional taste-test approval of celebrity chef Gordon Ramsay, who said, “You’re going to feed this #$^% to sick people? ARE YOU &amp;%*$@#&amp; KIDDING ME?”<br/><br/>Okay, so maybe approval isn’t quite the right word.<br/><br/><br/><br/></p> <h2>Welcome to bladders of the rich and famous!</h2> <p>Don’t you hate it when you’re driving out to your multimillion-dollar second home in the Hamptons and traffic is so bad you absolutely have to find a place to “rest” along the way? But wouldn’t you know it, there just isn’t anywhere to stop! Geez, how do we live?</p> <p>That’s where David Shusterman, MD, a urologist in New York City and a true American hero, comes in. He’s identified a market and positioned himself as the king of both bladder surgery and “bladder Botox” for the wealthy New Yorkers who regularly make long journeys from the city out to their second homes in the Hamptons. Traffic has increased dramatically on Long Island roads in recent years, and the journey can now taking upward of 4 hours. Some people just can’t make it that long without a bathroom break, and there are very few places to stop along the way.<br/><br/>[[{"fid":"287658","view_mode":"medstat_image_flush_left","fields":{"format":"medstat_image_flush_left","field_file_image_alt_text[und][0][value]":"Vehicles in stop-and-go traffic","field_file_image_credit[und][0][value]":"National Park Service/Rawpixel","field_file_image_caption[und][0][value]":""},"type":"media","attributes":{"class":"media-element file-medstat_image_flush_left"}}]]Dr. Shusterman understands the plight of the Hamptons vacationer, as <span class="Hyperlink"><a href="https://www.insider.com/hamptons-bladder-pae-traffic-urine-botox-2022-6">he told Insider.com</a></span>: “I can’t tell you how many arguments I personally get into – I’ve lost three friends because I’m the driver and refuse to stop for them.” A tragedy worthy of Shakespeare himself.<br/><br/>During the summer season, Dr. Shusterman performs about 10 prostate artery embolizations a week, an hour-long procedure that shrinks the prostate, which is great for 50- to 60-year-old men with enlarged prostates that cause more frequent bathroom trips. He also performs Botox injections into the bladder once or twice a week for women, which reduces the need to urinate for roughly 6 months. The perfect amount of time to get them through the summer season.<br/><br/>These procedures are sometimes covered by insurance but can cost as much as $20,000 if paid out of pocket. That’s a lot of money to us, but if you’re the sort of person who has a second home in the Hamptons, $20,000 is chump change, especially if it means you won’t have to go 2 entire minutes out of your way to use a gas-station bathroom. Then again, having seen a more than a few gas-station bathrooms in our time, maybe they have a point.<br/><br/></p> <h2>Ditch the apples. Go for the avocados </h2> <p>We’ve all heard about “an apple a day,” but instead of apples you might want to go with avocados. </p> <p>[[{"fid":"250404","view_mode":"medstat_image_flush_right","fields":{"format":"medstat_image_flush_right","field_file_image_alt_text[und][0][value]":"Avocados","field_file_image_credit[und][0][value]":"tookapic/Pixabay","field_file_image_caption[und][0][value]":""},"type":"media","attributes":{"class":"media-element file-medstat_image_flush_right"}}]]Avocados are generally thought to be a healthy fat. A study just published in the <span class="Hyperlink"><a href="https://www.ahajournals.org/doi/10.1161/JAHA.122.025657?cookieSet=1">Journal of the American Heart Association</a></span> proves that they actually don’t do anything for your waistline but will work wonders on your cholesterol level. The study involved 923 participants who were considered overweight/obese split into two groups: One was asked to consume an avocado a day, and the other continued their usual diets and were asked to consume fewer than two avocados a month. <br/><br/>At the end of the 6 months, the researchers found total cholesterol decreased by an additional 2.9 mg/dL and LDL cholesterol by 2.5 mg/dL in those who ate one avocado every day, compared with the usual-diet group. And even though avocados have a lot of calories, there was no clinical evidence that it impacted weight gain or any cardiometabolic risk factors, according to a <span class="Hyperlink"><a href="https://www.psu.edu/news/research/story/daily-avocados-improve-diet-quality-help-lower-cholesterol-levels/">statement from Penn State University</a></span>. <br/><br/>Avocados, then, can be considered a guilt-free food. The findings from this study suggest it can give a substantial boost to your overall quality of diet, in turn lessening your risk of developing type 2 diabetes and some cancers, <span class="Hyperlink"><a href="https://www.depts.ttu.edu/hs/ns/petersen.php">Kristina Peterson</a></span>, PhD, assistant professor of nutritional sciences at Texas Tech University, said in the statement. <br/><br/>So get creative with your avocado recipes. You can only eat so much guacamole. <br/><br/></p> <h2>Your nose knows a good friend for you</h2> <p>You’ve probably noticed how dogs sniff other dogs and people before becoming friends. It would be pretty comical if people did the same thing, right? Just walked up to strangers and started sniffing them like dogs?</p> <p>Well, apparently humans do go by smell when it comes to making friends, and they prefer people who smell like them. Maybe you’ve noticed that your friends look like you, share your values, and think the same way as you. You’re probably right, seeing as previous research has pointed to this.<br/><br/>For <span class="Hyperlink"><a href="https://wis-wander.weizmann.ac.il/life-sciences/scent-friend">the current study</a></span>, done to show how smell affects human behavior, researchers recruited people who befriended each other quickly, before knowing much about each other. They assumed that the relationships between these same-sex, nonromantic “click friends” relied more on physiological traits, including smell. After collecting samples from the click friends, researchers used an eNose to scan chemical signatures. In another experiment, human volunteers sniffed samples to determine if any were similar. Both experiments showed that click friends had more similar smells than pairs of random people.[[{"fid":"287656","view_mode":"medstat_image_flush_right","fields":{"format":"medstat_image_flush_right","field_file_image_alt_text[und][0][value]":"The eNose does its thing.","field_file_image_credit[und][0][value]":"Weizmann Institute of Science","field_file_image_caption[und][0][value]":"The eNose does its thing."},"type":"media","attributes":{"class":"media-element file-medstat_image_flush_right"}}]]<br/><br/>“This is not to say that we act like goats or shrews – humans likely rely on other, far more dominant cues in their social decision-making. Nevertheless, our study’s results do suggest that our nose plays a bigger role than previously thought in our choice of friends,” said senior author Noam Sobel, PhD, of the Weizmann Institute of Science in Rehovot, Israel.<br/><br/>Lead author Inbal Ravreby, a graduate student at the institute, put it this way: “These results imply that, as the saying goes, there is chemistry in social chemistry.”</p> </itemContent> </newsItem> <newsItem> <itemMeta> <itemRole>teaser</itemRole> <itemClass>text</itemClass> <title/> <deck/> </itemMeta> <itemContent> </itemContent> </newsItem> </itemSet></root>
Disallow All Ads
Content Gating
No Gating (article Unlocked/Free)
Alternative CME
Disqus Comments
Default
Use ProPublica
Hide sidebar & use full width
render the right sidebar.
Conference Recap Checkbox
Not Conference Recap
Clinical Edge
Display the Slideshow in this Article
Medscape Article
Display survey writer
Reuters content
Disable Inline Native ads
WebMD Article

Mosquitoes genetically modified to stop disease pass early test

Article Type
Changed
Wed, 05/11/2022 - 13:24

Genetically modified mosquitoes released in the United States appear to have passed an early test that suggests they might one day help reduce the population of insects that transmit infectious diseases.

As part of the test, scientists released nearly 5 million genetically engineered male Aedes aegypti mosquitoes over the course of 7 months in the Florida Keys.

Male mosquitoes don’t bite people, and these were also modified so they would transmit a gene to female offspring that causes them to die before they can reproduce. In theory, this means the population of A. aegypti mosquitoes would die off over time, so they wouldn’t spread diseases any more.

The goal of this pilot project in Florida was to see if these genetically modified male mosquitoes could successfully mate with females in the wild, and to confirm whether their female offspring would indeed die before they could reproduce. On both counts, the experiment was a success, Oxitec, the biotechnology company developing these engineered A. aegypti mosquitoes, said in a webinar.
 

More testing in Florida and California

Based on the results from this preliminary research, the Environmental Protection Agency has approved additional pilot projects in Florida and California, the company said in a statement.

“Given the growing health threat this mosquito poses across the U.S., we’re working to make this technology available and accessible,” Grey Frandsen, Oxitec’s chief executive, said in the statement. “These pilot programs, wherein we can demonstrate the technology’s effectiveness in different climate settings, will play an important role in doing so.”

A. aegypti mosquitoes can spread several serious infectious diseases to humans, including dengueZikayellow fever and chikungunya, according to the Centers for Disease Control and Prevention.

Preliminary tests of the genetically modified mosquitoes weren’t designed to determine whether these engineered insects might stop the spread of these diseases. The goal of the initial tests was simply to see how reproduction played out once the genetically modified males were released.

The genetically engineered males successfully mated with females in the wild, the company reports. Scientists collected more than 22,000 eggs laid by these females from traps set out around the community in spots like flowerpots and trash cans.

In the lab, researchers confirmed that the female offspring from these pairings inherited a lethal gene designed to cause their death before adulthood. The lethal gene was transmitted to female offspring across multiple generations, scientists also found.

Many more trials would be needed before these genetically modified mosquitoes could be released in the wild on a larger scale – particularly because the tests done so far haven’t demonstrated that these engineered bugs can prevent the spread of infectious disease.

Releasing genetically modified A. aegypti mosquitoes into the wild won’t reduce the need for pesticides because most mosquitoes in the United States aren’t from this species.

A version of this article first appeared on WebMD.com.

Publications
Topics
Sections

Genetically modified mosquitoes released in the United States appear to have passed an early test that suggests they might one day help reduce the population of insects that transmit infectious diseases.

As part of the test, scientists released nearly 5 million genetically engineered male Aedes aegypti mosquitoes over the course of 7 months in the Florida Keys.

Male mosquitoes don’t bite people, and these were also modified so they would transmit a gene to female offspring that causes them to die before they can reproduce. In theory, this means the population of A. aegypti mosquitoes would die off over time, so they wouldn’t spread diseases any more.

The goal of this pilot project in Florida was to see if these genetically modified male mosquitoes could successfully mate with females in the wild, and to confirm whether their female offspring would indeed die before they could reproduce. On both counts, the experiment was a success, Oxitec, the biotechnology company developing these engineered A. aegypti mosquitoes, said in a webinar.
 

More testing in Florida and California

Based on the results from this preliminary research, the Environmental Protection Agency has approved additional pilot projects in Florida and California, the company said in a statement.

“Given the growing health threat this mosquito poses across the U.S., we’re working to make this technology available and accessible,” Grey Frandsen, Oxitec’s chief executive, said in the statement. “These pilot programs, wherein we can demonstrate the technology’s effectiveness in different climate settings, will play an important role in doing so.”

A. aegypti mosquitoes can spread several serious infectious diseases to humans, including dengueZikayellow fever and chikungunya, according to the Centers for Disease Control and Prevention.

Preliminary tests of the genetically modified mosquitoes weren’t designed to determine whether these engineered insects might stop the spread of these diseases. The goal of the initial tests was simply to see how reproduction played out once the genetically modified males were released.

The genetically engineered males successfully mated with females in the wild, the company reports. Scientists collected more than 22,000 eggs laid by these females from traps set out around the community in spots like flowerpots and trash cans.

In the lab, researchers confirmed that the female offspring from these pairings inherited a lethal gene designed to cause their death before adulthood. The lethal gene was transmitted to female offspring across multiple generations, scientists also found.

Many more trials would be needed before these genetically modified mosquitoes could be released in the wild on a larger scale – particularly because the tests done so far haven’t demonstrated that these engineered bugs can prevent the spread of infectious disease.

Releasing genetically modified A. aegypti mosquitoes into the wild won’t reduce the need for pesticides because most mosquitoes in the United States aren’t from this species.

A version of this article first appeared on WebMD.com.

Genetically modified mosquitoes released in the United States appear to have passed an early test that suggests they might one day help reduce the population of insects that transmit infectious diseases.

As part of the test, scientists released nearly 5 million genetically engineered male Aedes aegypti mosquitoes over the course of 7 months in the Florida Keys.

Male mosquitoes don’t bite people, and these were also modified so they would transmit a gene to female offspring that causes them to die before they can reproduce. In theory, this means the population of A. aegypti mosquitoes would die off over time, so they wouldn’t spread diseases any more.

The goal of this pilot project in Florida was to see if these genetically modified male mosquitoes could successfully mate with females in the wild, and to confirm whether their female offspring would indeed die before they could reproduce. On both counts, the experiment was a success, Oxitec, the biotechnology company developing these engineered A. aegypti mosquitoes, said in a webinar.
 

More testing in Florida and California

Based on the results from this preliminary research, the Environmental Protection Agency has approved additional pilot projects in Florida and California, the company said in a statement.

“Given the growing health threat this mosquito poses across the U.S., we’re working to make this technology available and accessible,” Grey Frandsen, Oxitec’s chief executive, said in the statement. “These pilot programs, wherein we can demonstrate the technology’s effectiveness in different climate settings, will play an important role in doing so.”

A. aegypti mosquitoes can spread several serious infectious diseases to humans, including dengueZikayellow fever and chikungunya, according to the Centers for Disease Control and Prevention.

Preliminary tests of the genetically modified mosquitoes weren’t designed to determine whether these engineered insects might stop the spread of these diseases. The goal of the initial tests was simply to see how reproduction played out once the genetically modified males were released.

The genetically engineered males successfully mated with females in the wild, the company reports. Scientists collected more than 22,000 eggs laid by these females from traps set out around the community in spots like flowerpots and trash cans.

In the lab, researchers confirmed that the female offspring from these pairings inherited a lethal gene designed to cause their death before adulthood. The lethal gene was transmitted to female offspring across multiple generations, scientists also found.

Many more trials would be needed before these genetically modified mosquitoes could be released in the wild on a larger scale – particularly because the tests done so far haven’t demonstrated that these engineered bugs can prevent the spread of infectious disease.

Releasing genetically modified A. aegypti mosquitoes into the wild won’t reduce the need for pesticides because most mosquitoes in the United States aren’t from this species.

A version of this article first appeared on WebMD.com.

Publications
Publications
Topics
Article Type
Sections
Teambase XML
<?xml version="1.0" encoding="UTF-8"?>
<!--$RCSfile: InCopy_agile.xsl,v $ $Revision: 1.35 $-->
<!--$RCSfile: drupal.xsl,v $ $Revision: 1.7 $-->
<root generator="drupal.xsl" gversion="1.7"> <header> <fileName>157858</fileName> <TBEID>0C0426A1.SIG</TBEID> <TBUniqueIdentifier>MD_0C0426A1</TBUniqueIdentifier> <newsOrJournal>News</newsOrJournal> <publisherName>Frontline Medical Communications</publisherName> <storyname/> <articleType>2</articleType> <TBLocation>QC Done-All Pubs</TBLocation> <QCDate>20220511T114501</QCDate> <firstPublished>20220511T115834</firstPublished> <LastPublished>20220511T115834</LastPublished> <pubStatus qcode="stat:"/> <embargoDate/> <killDate/> <CMSDate>20220511T115834</CMSDate> <articleSource/> <facebookInfo/> <meetingNumber/> <byline>Lisa Rapaport</byline> <bylineText>LISA RAPAPORT</bylineText> <bylineFull>LISA RAPAPORT</bylineFull> <bylineTitleText/> <USOrGlobal/> <wireDocType/> <newsDocType/> <journalDocType/> <linkLabel/> <pageRange/> <citation/> <quizID/> <indexIssueDate/> <itemClass qcode="ninat:text"/> <provider qcode="provider:imng"> <name>IMNG Medical Media</name> <rightsInfo> <copyrightHolder> <name>Frontline Medical News</name> </copyrightHolder> <copyrightNotice>Copyright (c) 2015 Frontline Medical News, a Frontline Medical Communications Inc. company. All rights reserved. This material may not be published, broadcast, copied, or otherwise reproduced or distributed without the prior written permission of Frontline Medical Communications Inc.</copyrightNotice> </rightsInfo> </provider> <abstract/> <metaDescription>Genetically modified mosquitoes released in the United States appear to have passed an early test that suggests they might one day help reduce the population of</metaDescription> <articlePDF/> <teaserImage/> <teaser>In the lab, researchers confirmed that the female offspring from these pairings inherited a lethal gene designed to cause their death before adulthood. </teaser> <title>Mosquitoes genetically modified to stop disease pass early test</title> <deck/> <disclaimer/> <AuthorList/> <articleURL/> <doi/> <pubMedID/> <publishXMLStatus/> <publishXMLVersion>1</publishXMLVersion> <useEISSN>0</useEISSN> <urgency/> <pubPubdateYear/> <pubPubdateMonth/> <pubPubdateDay/> <pubVolume/> <pubNumber/> <wireChannels/> <primaryCMSID/> <CMSIDs/> <keywords/> <seeAlsos/> <publications_g> <publicationData> <publicationCode>idprac</publicationCode> <pubIssueName/> <pubArticleType/> <pubTopics/> <pubCategories/> <pubSections/> </publicationData> </publications_g> <publications> <term canonical="true">20</term> </publications> <sections> <term canonical="true">39313</term> </sections> <topics> <term>27923</term> <term canonical="true">317</term> </topics> <links/> </header> <itemSet> <newsItem> <itemMeta> <itemRole>Main</itemRole> <itemClass>text</itemClass> <title>Mosquitoes genetically modified to stop disease pass early test</title> <deck/> </itemMeta> <itemContent> <p><span class="tag metaDescription">Genetically modified mosquitoes released in the United States appear to have passed an early test that suggests they might one day help reduce the population of insects that transmit infectious diseases.</span> </p> <p>As part of the test, scientists released nearly 5 million genetically engineered male <em>Aedes aegypti</em> mosquitoes over the course of 7 months in the Florida Keys.<br/><br/>Male mosquitoes don’t bite people, and these were also modified so they would transmit a gene to female offspring that causes them to die before they can reproduce. In theory, this means the population of <em>A. aegypti</em> mosquitoes would die off over time, so they wouldn’t spread diseases any more.<br/><br/>The goal of this pilot project in Florida was to see if these genetically modified male mosquitoes could successfully mate with females in the wild, and to confirm whether their female offspring would indeed die before they could reproduce. On both counts, the experiment was a success, Oxitec, the biotechnology company developing these engineered <em>A. aegypti </em>mosquitoes, said in a <span class="Hyperlink"><a href="https://www.youtube.com/watch?v=zDfVcvnNQIY">webinar</a></span>.<br/><br/></p> <h2>More testing in Florida and California</h2> <p>Based on the results from this preliminary research, the Environmental Protection Agency has approved additional pilot projects in Florida and California, the company said in a <span class="Hyperlink"><a href="https://www.oxitec.com/en/news/us-epa-approves-oxitec-mosquito-pilot-projects-in-california-and-florida">statement</a></span>.</p> <p>“Given the growing health threat this mosquito poses across the U.S., we’re working to make this technology available and accessible,” Grey Frandsen, Oxitec’s chief executive, said in the statement. “These pilot programs, wherein we can demonstrate the technology’s effectiveness in different climate settings, will play an important role in doing so.”<br/><br/><em>A. aegypti </em>mosquitoes can spread several serious infectious diseases to humans, including <span class="Hyperlink">dengue</span>, <span class="Hyperlink">Zika</span>, <span class="Hyperlink">yellow fever</span> and chikungunya, according to the Centers for Disease Control and Prevention.<br/><br/>Preliminary tests of the genetically modified mosquitoes weren’t designed to determine whether these engineered insects might stop the spread of these diseases. The goal of the initial tests was simply to see how reproduction played out once the genetically modified males were released.<br/><br/>The genetically engineered males successfully mated with females in the wild, the company reports. Scientists collected more than 22,000 eggs laid by these females from traps set out around the community in spots like flowerpots and trash cans.<br/><br/>In the lab, researchers confirmed that the female offspring from these pairings inherited a lethal gene designed to cause their death before adulthood. The lethal gene was transmitted to female offspring across multiple generations, scientists also found.<br/><br/>Many more trials would be needed before these genetically modified mosquitoes could be released in the wild on a larger scale – particularly because the tests done so far haven’t demonstrated that these engineered bugs can prevent the spread of infectious disease.<br/><br/>Releasing genetically modified <em>A. aegypti </em>mosquitoes into the wild won’t reduce the need for pesticides because most mosquitoes in the United States aren’t from this species.</p> <p> <em>A version of this article first appeared on <span class="Hyperlink"><a href="https://www.webmd.com/a-to-z-guides/news/20220509/mosquitoes-genetically-modified-to-stop-disease-pass-early-test">WebMD.com</a></span>.</em> </p> </itemContent> </newsItem> <newsItem> <itemMeta> <itemRole>teaser</itemRole> <itemClass>text</itemClass> <title/> <deck/> </itemMeta> <itemContent> </itemContent> </newsItem> </itemSet></root>
Disallow All Ads
Content Gating
No Gating (article Unlocked/Free)
Alternative CME
Disqus Comments
Default
Use ProPublica
Hide sidebar & use full width
render the right sidebar.
Conference Recap Checkbox
Not Conference Recap
Clinical Edge
Display the Slideshow in this Article
Medscape Article
Display survey writer
Reuters content
Disable Inline Native ads
WebMD Article

Mortality 12 times higher in children with congenital Zika

Article Type
Changed
Thu, 02/24/2022 - 10:54

About 80% of people infected with Zika virus show no symptoms, and that’s particularly problematic during pregnancy. The infection can cause birth defects and is the origin of numerous cases of microcephaly and other neurologic impairments.

The large amount of Aedes aegypti mosquitoes in Brazilian cities, in addition to social and political problems, facilitated the spread of Zika to the point that the country recorded its highest number of congenital Zika syndrome notifications from 2015 to 2018. Since then, researchers have investigated the extent of the problem.

One of the most compelling findings about the dramatic legacy of Zika in Brazil was published Feb. 24 in The New England Journal of Medicine: After tracking 11,481,215 children born alive in Brazil up to 36 months of age between the years 2015 and 2018, the researchers found that the mortality rate was about 12 times higher among children with congenital Zika syndrome in comparison to children without the syndrome. The study is the first to follow children with congenital Zika syndrome for 3 years and to report mortality in this group.

“This difference persisted throughout the first 3 years of life,” Enny S. Paixão, PhD, of the London School of Hygiene and Tropical Medicine, and Fiocruz-Bahia’s Instituto Gonçalo Moniz, in Brazil, said in an interview.

At the end of the study period, the mortality rate was 52.6 deaths (95% confidence interval, 47.6-58.0) per 1,000 person-years among children with congenital Zika syndrome and 5.6 deaths (95% CI, 5.6-5.7) per 1,000 person-years among those without the syndrome. The mortality rate ratio among children with congenital Zika syndrome, compared with those without it, was 11.3 (95% CI, 10.2-12.4). Data analysis also showed that the 3,308 children with the syndrome were born to mothers who were younger and had fewer years of study when compared to the mothers of their 11,477,907 counterparts without the syndrome.

“If the children survived the first month of life, they had a greater chance of surviving during childhood, because the mortality rates drop,” said Dr. Paixão. “In children with congenital Zika syndrome, this rate also drops, but slowly. The more we stratified by period – neonatal, post neonatal, and the period from the first to the third year of life – the more we saw the relative risk increase. After the first year of life, children with the syndrome were almost 22 times more likely to die compared to children without it. It was hard to believe the data.” Dr. Paixão added that the mortality observed in this study is comparable with the findings of previous studies.

In addition to the large sample size – more than 11 million children – another unique aspect of the work was the comparison with healthy live births. “Previous studies didn’t have this comparison group,” Dr. said Paixão.

Perhaps the major challenge of the study, Dr. Paixão explained, was the fragmentation of the data. “In Brazil we have high-quality data systems, but they are not interconnected. We have a database with all live births, another with mortality records, and another with all children with congenital Zika syndrome. The first big challenge was putting all this information together.”

The solution found by the researchers was to use data linkage – bringing information about the same person from different data banks to create a richer dataset. Basically, they linked the data from the live births registry with the deaths that occurred in the studied age group plus around 18,000 children with congenital Zika syndrome. This was done, said Dr. Paixão, by choosing some identifying variables (such as mother’s name, address, and age) and using an algorithm that evaluates the probability that the “N” in one database is the same person in another database.

“This is expensive, complex, [and] involves super-powerful computers and a lot of researchers,” she said.

The impressive mortality data for children with congenital Zika syndrome obtained by the group of researchers made it inevitable to think about how the country should address this terrible legacy.

“The first and most important recommendation is that the country needs to invest in primary care, so that women don’t get Zika during pregnancy and children aren’t at risk of getting the syndrome,” said Dr. Paixão.

As for the affected population, she highlighted the need to deepen the understanding of the syndrome’s natural history to improve survival and quality of life of affected children and their families. One possibility that was recently discussed by the group of researchers is to carry out a study on the causes of hospitalization of children with the syndrome to develop appropriate protocols and procedures that reduce admissions and death in this population.

A version of this article first appeared on Medscape.com.

Publications
Topics
Sections

About 80% of people infected with Zika virus show no symptoms, and that’s particularly problematic during pregnancy. The infection can cause birth defects and is the origin of numerous cases of microcephaly and other neurologic impairments.

The large amount of Aedes aegypti mosquitoes in Brazilian cities, in addition to social and political problems, facilitated the spread of Zika to the point that the country recorded its highest number of congenital Zika syndrome notifications from 2015 to 2018. Since then, researchers have investigated the extent of the problem.

One of the most compelling findings about the dramatic legacy of Zika in Brazil was published Feb. 24 in The New England Journal of Medicine: After tracking 11,481,215 children born alive in Brazil up to 36 months of age between the years 2015 and 2018, the researchers found that the mortality rate was about 12 times higher among children with congenital Zika syndrome in comparison to children without the syndrome. The study is the first to follow children with congenital Zika syndrome for 3 years and to report mortality in this group.

“This difference persisted throughout the first 3 years of life,” Enny S. Paixão, PhD, of the London School of Hygiene and Tropical Medicine, and Fiocruz-Bahia’s Instituto Gonçalo Moniz, in Brazil, said in an interview.

At the end of the study period, the mortality rate was 52.6 deaths (95% confidence interval, 47.6-58.0) per 1,000 person-years among children with congenital Zika syndrome and 5.6 deaths (95% CI, 5.6-5.7) per 1,000 person-years among those without the syndrome. The mortality rate ratio among children with congenital Zika syndrome, compared with those without it, was 11.3 (95% CI, 10.2-12.4). Data analysis also showed that the 3,308 children with the syndrome were born to mothers who were younger and had fewer years of study when compared to the mothers of their 11,477,907 counterparts without the syndrome.

“If the children survived the first month of life, they had a greater chance of surviving during childhood, because the mortality rates drop,” said Dr. Paixão. “In children with congenital Zika syndrome, this rate also drops, but slowly. The more we stratified by period – neonatal, post neonatal, and the period from the first to the third year of life – the more we saw the relative risk increase. After the first year of life, children with the syndrome were almost 22 times more likely to die compared to children without it. It was hard to believe the data.” Dr. Paixão added that the mortality observed in this study is comparable with the findings of previous studies.

In addition to the large sample size – more than 11 million children – another unique aspect of the work was the comparison with healthy live births. “Previous studies didn’t have this comparison group,” Dr. said Paixão.

Perhaps the major challenge of the study, Dr. Paixão explained, was the fragmentation of the data. “In Brazil we have high-quality data systems, but they are not interconnected. We have a database with all live births, another with mortality records, and another with all children with congenital Zika syndrome. The first big challenge was putting all this information together.”

The solution found by the researchers was to use data linkage – bringing information about the same person from different data banks to create a richer dataset. Basically, they linked the data from the live births registry with the deaths that occurred in the studied age group plus around 18,000 children with congenital Zika syndrome. This was done, said Dr. Paixão, by choosing some identifying variables (such as mother’s name, address, and age) and using an algorithm that evaluates the probability that the “N” in one database is the same person in another database.

“This is expensive, complex, [and] involves super-powerful computers and a lot of researchers,” she said.

The impressive mortality data for children with congenital Zika syndrome obtained by the group of researchers made it inevitable to think about how the country should address this terrible legacy.

“The first and most important recommendation is that the country needs to invest in primary care, so that women don’t get Zika during pregnancy and children aren’t at risk of getting the syndrome,” said Dr. Paixão.

As for the affected population, she highlighted the need to deepen the understanding of the syndrome’s natural history to improve survival and quality of life of affected children and their families. One possibility that was recently discussed by the group of researchers is to carry out a study on the causes of hospitalization of children with the syndrome to develop appropriate protocols and procedures that reduce admissions and death in this population.

A version of this article first appeared on Medscape.com.

About 80% of people infected with Zika virus show no symptoms, and that’s particularly problematic during pregnancy. The infection can cause birth defects and is the origin of numerous cases of microcephaly and other neurologic impairments.

The large amount of Aedes aegypti mosquitoes in Brazilian cities, in addition to social and political problems, facilitated the spread of Zika to the point that the country recorded its highest number of congenital Zika syndrome notifications from 2015 to 2018. Since then, researchers have investigated the extent of the problem.

One of the most compelling findings about the dramatic legacy of Zika in Brazil was published Feb. 24 in The New England Journal of Medicine: After tracking 11,481,215 children born alive in Brazil up to 36 months of age between the years 2015 and 2018, the researchers found that the mortality rate was about 12 times higher among children with congenital Zika syndrome in comparison to children without the syndrome. The study is the first to follow children with congenital Zika syndrome for 3 years and to report mortality in this group.

“This difference persisted throughout the first 3 years of life,” Enny S. Paixão, PhD, of the London School of Hygiene and Tropical Medicine, and Fiocruz-Bahia’s Instituto Gonçalo Moniz, in Brazil, said in an interview.

At the end of the study period, the mortality rate was 52.6 deaths (95% confidence interval, 47.6-58.0) per 1,000 person-years among children with congenital Zika syndrome and 5.6 deaths (95% CI, 5.6-5.7) per 1,000 person-years among those without the syndrome. The mortality rate ratio among children with congenital Zika syndrome, compared with those without it, was 11.3 (95% CI, 10.2-12.4). Data analysis also showed that the 3,308 children with the syndrome were born to mothers who were younger and had fewer years of study when compared to the mothers of their 11,477,907 counterparts without the syndrome.

“If the children survived the first month of life, they had a greater chance of surviving during childhood, because the mortality rates drop,” said Dr. Paixão. “In children with congenital Zika syndrome, this rate also drops, but slowly. The more we stratified by period – neonatal, post neonatal, and the period from the first to the third year of life – the more we saw the relative risk increase. After the first year of life, children with the syndrome were almost 22 times more likely to die compared to children without it. It was hard to believe the data.” Dr. Paixão added that the mortality observed in this study is comparable with the findings of previous studies.

In addition to the large sample size – more than 11 million children – another unique aspect of the work was the comparison with healthy live births. “Previous studies didn’t have this comparison group,” Dr. said Paixão.

Perhaps the major challenge of the study, Dr. Paixão explained, was the fragmentation of the data. “In Brazil we have high-quality data systems, but they are not interconnected. We have a database with all live births, another with mortality records, and another with all children with congenital Zika syndrome. The first big challenge was putting all this information together.”

The solution found by the researchers was to use data linkage – bringing information about the same person from different data banks to create a richer dataset. Basically, they linked the data from the live births registry with the deaths that occurred in the studied age group plus around 18,000 children with congenital Zika syndrome. This was done, said Dr. Paixão, by choosing some identifying variables (such as mother’s name, address, and age) and using an algorithm that evaluates the probability that the “N” in one database is the same person in another database.

“This is expensive, complex, [and] involves super-powerful computers and a lot of researchers,” she said.

The impressive mortality data for children with congenital Zika syndrome obtained by the group of researchers made it inevitable to think about how the country should address this terrible legacy.

“The first and most important recommendation is that the country needs to invest in primary care, so that women don’t get Zika during pregnancy and children aren’t at risk of getting the syndrome,” said Dr. Paixão.

As for the affected population, she highlighted the need to deepen the understanding of the syndrome’s natural history to improve survival and quality of life of affected children and their families. One possibility that was recently discussed by the group of researchers is to carry out a study on the causes of hospitalization of children with the syndrome to develop appropriate protocols and procedures that reduce admissions and death in this population.

A version of this article first appeared on Medscape.com.

Publications
Publications
Topics
Article Type
Sections
Disallow All Ads
Content Gating
No Gating (article Unlocked/Free)
Alternative CME
Disqus Comments
Default
Use ProPublica
Hide sidebar & use full width
render the right sidebar.
Conference Recap Checkbox
Not Conference Recap
Clinical Edge
Display the Slideshow in this Article
Medscape Article
Display survey writer
Reuters content
Disable Inline Native ads
WebMD Article

ACIP releases new dengue vaccine recommendations

Article Type
Changed
Fri, 01/14/2022 - 15:16

The Center for Disease Control and Prevention’s Advisory Committee on Immunization Practices has now recommended using Sanofi’s dengue vaccine, Dengvaxia, in the United States, with specific restrictions. The vaccine is only to be used for children aged 9-16 who live in endemic areas and who have evidence with a specific diagnostic test of prior dengue infection.

Dengue is a mosquito-borne virus found throughout the world, primarily in tropical or subtropical climates. Cases had steadily been increasing to 5.2 million in 2019, and the geographic distribution of cases is broadening with climate change and urbanization. About half of the world’s population is now at risk.

The dengue virus has four serotypes. The first infection may be mild or asymptomatic, but the second one can be life-threatening because of a phenomenon called antibody-dependent enhancement.

The lead author of the new recommendations is Gabriela Paz-Bailey, MD, PhD, division of vector-borne diseases, dengue branch, CDC. She told this news organization that, during the second infection, when there are “low levels of antibodies from that first infection, the antibodies help the virus get inside the cells. There the virus is not killed, and that results in increased viral load, and then that can result in more severe disease and the plasma leakage” syndrome, which can lead to shock, severe bleeding, and organ failure. The death rate for severe dengue is up to 13%.

Previous infection with Zika virus, common in the same areas where dengue is endemic, can also increase the risk for symptomatic and severe dengue for subsequent infections.

In the United States, Puerto Rico is the main focus of control efforts because 95% of domestic dengue cases originate there – almost 30,000 cases between 2010 and 2020, with 11,000 cases and 4,000 hospitalizations occurring in children between the ages of 10 and 19.

Because Aedes aegypti, the primary mosquito vector transmitting dengue, is resistant to all commonly used insecticides in Puerto Rico, preventive efforts have shifted from insecticides to vaccination.
 

Antibody tests prevaccination

The main concern with the Sanofi’s dengue vaccine is that it could act as an asymptomatic primary dengue infection, in effect priming the body for a severe reaction from antibody-dependent enhancement with a subsequent infection. That is why it’s critical that the vaccine only be given to children with evidence of prior disease.

Dr. Paz-Bailey said: “The CDC came up with recommendations of what the performance of the test used for prevaccination screening should be. And it was 98% specificity and 75% sensitivity. ... But no test by itself was found to have a specificity of 98%, and this is why we’re recommending the two-test algorithm,” in which two different assays are run off the same blood sample, drawn at a prevaccination visit.

If the child has evidence of prior dengue, they can proceed with vaccination to protect against recurrent infection. Dengvaxia is given as a series of three shots over 6 months. Vaccine efficacy is 82% – so not everyone is protected, and additionally, that protection declines over time.

There is concern that it will be difficult to achieve compliance with such a complex regimen. Dr. Paz-Bailey said, “But I think that the trust in vaccines that is highly prevalent for [Puerto] Rico and trusting the health care system, and sort of the importance that is assigned to dengue by providers and by parents because of previous outbreaks and previous experiences is going to help us.” She added, “I think that the COVID experience has been very revealing. And what we have learned is that Puerto Rico has a very strong health care system, a very strong network of vaccine providers. ... Coverage for COVID vaccine is higher than in other parts of the U.S.”

One of the interesting things about dengue is that the first infection can range from asymptomatic to life-threatening. The second infection is generally worse because of this antibody-dependent enhancement phenomenon. Eng Eong Ooi, MD, PhD, professor of microbiology and immunology, National University of Singapore, told this news organization, “After you have two infections, you seem to be protected quite well against the remaining two [serotypes]. The vaccine serves as another episode of infection in those who had prior dengue, so then any natural infections after the vaccination in the seropositive become like the outcome of a third or fourth infection.”

Vaccination alone will not solve dengue. Dr. Ooi said, “There’s not one method that would fully control dengue. You need both vaccines as well as control measures, whether it’s Wolbachia or something else. At the same time, I think we need antiviral drugs, because hitting this virus in just one part of its life cycle wouldn’t make a huge, lasting impact.” Dr. Ooi added that as “the spread of the virus and the population immunity drops, you’re actually now more vulnerable to dengue outbreaks when they do get introduced. So, suppressing transmission alone isn’t the answer. You also have to keep herd immunity levels high. So if we can reduce the virus transmission by controlling either mosquito population or transmission and at the same time vaccinate to keep the immunity levels high, then I think we have a chance of controlling dengue.”

Dr. Paz-Bailey concluded: “I do want to emphasize that we are excited about having these tools, because for years and years, we have had really limited options to prevent and control dengue. It’s an important addition to have the vaccine be approved to be used within the U.S., and it’s going to pave the road for future vaccines.”

Dr. Paz-Bailey and Dr. Ooi reported no relevant financial relationships.

A version of this article first appeared on Medscape.com.

Publications
Topics
Sections

The Center for Disease Control and Prevention’s Advisory Committee on Immunization Practices has now recommended using Sanofi’s dengue vaccine, Dengvaxia, in the United States, with specific restrictions. The vaccine is only to be used for children aged 9-16 who live in endemic areas and who have evidence with a specific diagnostic test of prior dengue infection.

Dengue is a mosquito-borne virus found throughout the world, primarily in tropical or subtropical climates. Cases had steadily been increasing to 5.2 million in 2019, and the geographic distribution of cases is broadening with climate change and urbanization. About half of the world’s population is now at risk.

The dengue virus has four serotypes. The first infection may be mild or asymptomatic, but the second one can be life-threatening because of a phenomenon called antibody-dependent enhancement.

The lead author of the new recommendations is Gabriela Paz-Bailey, MD, PhD, division of vector-borne diseases, dengue branch, CDC. She told this news organization that, during the second infection, when there are “low levels of antibodies from that first infection, the antibodies help the virus get inside the cells. There the virus is not killed, and that results in increased viral load, and then that can result in more severe disease and the plasma leakage” syndrome, which can lead to shock, severe bleeding, and organ failure. The death rate for severe dengue is up to 13%.

Previous infection with Zika virus, common in the same areas where dengue is endemic, can also increase the risk for symptomatic and severe dengue for subsequent infections.

In the United States, Puerto Rico is the main focus of control efforts because 95% of domestic dengue cases originate there – almost 30,000 cases between 2010 and 2020, with 11,000 cases and 4,000 hospitalizations occurring in children between the ages of 10 and 19.

Because Aedes aegypti, the primary mosquito vector transmitting dengue, is resistant to all commonly used insecticides in Puerto Rico, preventive efforts have shifted from insecticides to vaccination.
 

Antibody tests prevaccination

The main concern with the Sanofi’s dengue vaccine is that it could act as an asymptomatic primary dengue infection, in effect priming the body for a severe reaction from antibody-dependent enhancement with a subsequent infection. That is why it’s critical that the vaccine only be given to children with evidence of prior disease.

Dr. Paz-Bailey said: “The CDC came up with recommendations of what the performance of the test used for prevaccination screening should be. And it was 98% specificity and 75% sensitivity. ... But no test by itself was found to have a specificity of 98%, and this is why we’re recommending the two-test algorithm,” in which two different assays are run off the same blood sample, drawn at a prevaccination visit.

If the child has evidence of prior dengue, they can proceed with vaccination to protect against recurrent infection. Dengvaxia is given as a series of three shots over 6 months. Vaccine efficacy is 82% – so not everyone is protected, and additionally, that protection declines over time.

There is concern that it will be difficult to achieve compliance with such a complex regimen. Dr. Paz-Bailey said, “But I think that the trust in vaccines that is highly prevalent for [Puerto] Rico and trusting the health care system, and sort of the importance that is assigned to dengue by providers and by parents because of previous outbreaks and previous experiences is going to help us.” She added, “I think that the COVID experience has been very revealing. And what we have learned is that Puerto Rico has a very strong health care system, a very strong network of vaccine providers. ... Coverage for COVID vaccine is higher than in other parts of the U.S.”

One of the interesting things about dengue is that the first infection can range from asymptomatic to life-threatening. The second infection is generally worse because of this antibody-dependent enhancement phenomenon. Eng Eong Ooi, MD, PhD, professor of microbiology and immunology, National University of Singapore, told this news organization, “After you have two infections, you seem to be protected quite well against the remaining two [serotypes]. The vaccine serves as another episode of infection in those who had prior dengue, so then any natural infections after the vaccination in the seropositive become like the outcome of a third or fourth infection.”

Vaccination alone will not solve dengue. Dr. Ooi said, “There’s not one method that would fully control dengue. You need both vaccines as well as control measures, whether it’s Wolbachia or something else. At the same time, I think we need antiviral drugs, because hitting this virus in just one part of its life cycle wouldn’t make a huge, lasting impact.” Dr. Ooi added that as “the spread of the virus and the population immunity drops, you’re actually now more vulnerable to dengue outbreaks when they do get introduced. So, suppressing transmission alone isn’t the answer. You also have to keep herd immunity levels high. So if we can reduce the virus transmission by controlling either mosquito population or transmission and at the same time vaccinate to keep the immunity levels high, then I think we have a chance of controlling dengue.”

Dr. Paz-Bailey concluded: “I do want to emphasize that we are excited about having these tools, because for years and years, we have had really limited options to prevent and control dengue. It’s an important addition to have the vaccine be approved to be used within the U.S., and it’s going to pave the road for future vaccines.”

Dr. Paz-Bailey and Dr. Ooi reported no relevant financial relationships.

A version of this article first appeared on Medscape.com.

The Center for Disease Control and Prevention’s Advisory Committee on Immunization Practices has now recommended using Sanofi’s dengue vaccine, Dengvaxia, in the United States, with specific restrictions. The vaccine is only to be used for children aged 9-16 who live in endemic areas and who have evidence with a specific diagnostic test of prior dengue infection.

Dengue is a mosquito-borne virus found throughout the world, primarily in tropical or subtropical climates. Cases had steadily been increasing to 5.2 million in 2019, and the geographic distribution of cases is broadening with climate change and urbanization. About half of the world’s population is now at risk.

The dengue virus has four serotypes. The first infection may be mild or asymptomatic, but the second one can be life-threatening because of a phenomenon called antibody-dependent enhancement.

The lead author of the new recommendations is Gabriela Paz-Bailey, MD, PhD, division of vector-borne diseases, dengue branch, CDC. She told this news organization that, during the second infection, when there are “low levels of antibodies from that first infection, the antibodies help the virus get inside the cells. There the virus is not killed, and that results in increased viral load, and then that can result in more severe disease and the plasma leakage” syndrome, which can lead to shock, severe bleeding, and organ failure. The death rate for severe dengue is up to 13%.

Previous infection with Zika virus, common in the same areas where dengue is endemic, can also increase the risk for symptomatic and severe dengue for subsequent infections.

In the United States, Puerto Rico is the main focus of control efforts because 95% of domestic dengue cases originate there – almost 30,000 cases between 2010 and 2020, with 11,000 cases and 4,000 hospitalizations occurring in children between the ages of 10 and 19.

Because Aedes aegypti, the primary mosquito vector transmitting dengue, is resistant to all commonly used insecticides in Puerto Rico, preventive efforts have shifted from insecticides to vaccination.
 

Antibody tests prevaccination

The main concern with the Sanofi’s dengue vaccine is that it could act as an asymptomatic primary dengue infection, in effect priming the body for a severe reaction from antibody-dependent enhancement with a subsequent infection. That is why it’s critical that the vaccine only be given to children with evidence of prior disease.

Dr. Paz-Bailey said: “The CDC came up with recommendations of what the performance of the test used for prevaccination screening should be. And it was 98% specificity and 75% sensitivity. ... But no test by itself was found to have a specificity of 98%, and this is why we’re recommending the two-test algorithm,” in which two different assays are run off the same blood sample, drawn at a prevaccination visit.

If the child has evidence of prior dengue, they can proceed with vaccination to protect against recurrent infection. Dengvaxia is given as a series of three shots over 6 months. Vaccine efficacy is 82% – so not everyone is protected, and additionally, that protection declines over time.

There is concern that it will be difficult to achieve compliance with such a complex regimen. Dr. Paz-Bailey said, “But I think that the trust in vaccines that is highly prevalent for [Puerto] Rico and trusting the health care system, and sort of the importance that is assigned to dengue by providers and by parents because of previous outbreaks and previous experiences is going to help us.” She added, “I think that the COVID experience has been very revealing. And what we have learned is that Puerto Rico has a very strong health care system, a very strong network of vaccine providers. ... Coverage for COVID vaccine is higher than in other parts of the U.S.”

One of the interesting things about dengue is that the first infection can range from asymptomatic to life-threatening. The second infection is generally worse because of this antibody-dependent enhancement phenomenon. Eng Eong Ooi, MD, PhD, professor of microbiology and immunology, National University of Singapore, told this news organization, “After you have two infections, you seem to be protected quite well against the remaining two [serotypes]. The vaccine serves as another episode of infection in those who had prior dengue, so then any natural infections after the vaccination in the seropositive become like the outcome of a third or fourth infection.”

Vaccination alone will not solve dengue. Dr. Ooi said, “There’s not one method that would fully control dengue. You need both vaccines as well as control measures, whether it’s Wolbachia or something else. At the same time, I think we need antiviral drugs, because hitting this virus in just one part of its life cycle wouldn’t make a huge, lasting impact.” Dr. Ooi added that as “the spread of the virus and the population immunity drops, you’re actually now more vulnerable to dengue outbreaks when they do get introduced. So, suppressing transmission alone isn’t the answer. You also have to keep herd immunity levels high. So if we can reduce the virus transmission by controlling either mosquito population or transmission and at the same time vaccinate to keep the immunity levels high, then I think we have a chance of controlling dengue.”

Dr. Paz-Bailey concluded: “I do want to emphasize that we are excited about having these tools, because for years and years, we have had really limited options to prevent and control dengue. It’s an important addition to have the vaccine be approved to be used within the U.S., and it’s going to pave the road for future vaccines.”

Dr. Paz-Bailey and Dr. Ooi reported no relevant financial relationships.

A version of this article first appeared on Medscape.com.

Publications
Publications
Topics
Article Type
Sections
Article Source

FROM MMWR RECOMMENDATIONS AND REPORTS

Disallow All Ads
Content Gating
No Gating (article Unlocked/Free)
Alternative CME
Disqus Comments
Default
Use ProPublica
Hide sidebar & use full width
render the right sidebar.
Conference Recap Checkbox
Not Conference Recap
Clinical Edge
Display the Slideshow in this Article
Medscape Article
Display survey writer
Reuters content
Disable Inline Native ads
WebMD Article

Zika vaccine candidate shows promise in phase 1 trial

Article Type
Changed
Tue, 02/16/2021 - 17:29

A Zika virus vaccine candidate prompted antibody responses in 80% of individuals who received two doses in a phase 1 study.

ZikaVirus_web.jpg

Although Zika cases have declined in recent years, “geographic expansion of the Aedes aegypti mosquito to areas where population-level immunity is low poses a substantial risk for future epidemics,” wrote Nadine C. Salisch, PhD, of Janssen Vaccines and Prevention, Leiden, the Netherlands, and colleagues in a paper published in Annals of Internal Medicine.

No vaccine against Zika is yet available, although more than 10 candidates have been studied in preclinical trials to date, they said.

The researchers randomized 100 healthy adult volunteers to an experimental Zika vaccine candidate known as Ad26.ZIKV.001 in either one-dose or two-dose regimens of 5x1010 viral particles (low dose) or 1x1011 viral particles (high dose) or placebo. Approximately half (55%) of the participants were women, and 72% were White.

Approximately 80% of patients in both two-dose groups showed antibody responses for a year after vaccination. Geometric mean titers (GMTs) reached peak of 823.4 in the low-dose/low-dose group and 961.5 in the high-dose/high-dose group. At day 365, the GMTs for these groups were 68.7 and 87.0, respectively.

A single high-dose vaccine achieved a similar level of neutralizing antibody titers, but lower peak neutralizing responses than the two-dose strategies, the researchers noted.

Most of the reported adverse events were mild to moderate, and short lived; the most common were injection site pain or tenderness, headache, and fatigue, the researchers said. After the first vaccination, 75% of participants in the low-dose groups, 88% of participants in high-dose groups, and 45% of participants receiving placebo reported local adverse events. In addition, 73%, 83%, and 40% of the participants in the low-dose, high-dose, and placebo groups, respectively, reported systemic adverse events. Reports were similar after the second vaccination. Two serious adverse events not related to vaccination were reported; one case of right lower lobe pneumonia and one case of incomplete spontaneous abortion.

The researchers also explored protective efficacy through a nonlethal mouse challenge model. “Transfer of 6 mg of IgG from Ad26.ZIKV.001 vaccines conferred complete protection from viremia in most recipient animals, with statistically significantly decreased breakthrough rates and cumulative viral loads per group compared with placebo,” they said.

The study findings were limited by the inability to assess safety and immunogenicity in an endemic area, the researchers noted. However, “Ad26.ZIKV.001 induces potent ZIKV-specific neutralizing responses with durability of at least 1 year, which supports further clinical development if an unmet medical need reemerges,” they said. “In addition, these data underscore the performance of the Ad26 vaccine platform, which Janssen is using for different infectious diseases, including COVID-19,” they noted.
 

Ad26 vector platform shows consistency

“Development of the investigational Janssen Zika vaccine candidate was initiated in 2015, and while the incidence of Zika virus has declined since the 2015-2016 outbreak, spread of the ‘carrier’ Aedes aegypti mosquito to areas where population-level immunity is low poses a substantial risk for future epidemics,” lead author Dr. Salisch said in an interview. For this reason, researchers say the vaccine warrants further development should the need reemerge, she said.

“Our research has found that while a single higher-dose regimen had lower peak neutralizing responses than a two-dose regimen, it achieved a similar level of neutralizing antibody responses at 1 year, an encouraging finding that shows our vaccine may be a useful tool to curb Zika epidemics,” Dr. Salisch noted. “Previous experience with the Ad26 vector platform across our investigational vaccine programs have yielded similarly promising results, most recently with our investigational Janssen COVID-19 vaccine program, for which phase 3 data show a single-dose vaccine met all primary and key secondary endpoints,” she said.

“The biggest barrier [to further development of the candidate vaccine] is one that we actually consider ourselves fortunate to have: The very low incidence of reported Zika cases currently reported worldwide,” Dr. Salisch said. “However, the current Zika case rate can change at any time, and in the event the situation demands it, we are open to alternative regulatory pathways to help us glean the necessary insights on vaccine safety and efficacy to further advance the development of this candidate,” she emphasized.

As for additional research, “there are still questions surrounding Zika transmission and the pathomechanism of congenital Zika syndrome,” said Dr. Salisch. “Our hope is that a correlate of protection against Zika disease, and in particular against congenital Zika syndrome, can be identified,” she said.  

Consider pregnant women in next phase of research

“A major hurdle in ZIKV vaccine development is the inability to conduct large efficacy studies in the absence of a current outbreak,” Ann Chahroudi, MD, of Emory University, Atlanta, and Sallie Permar, MD, of Weill Cornell Medicine, New York, wrote in an accompanying editorial.

The current study provided some efficacy data using a mouse model, but “these data are obviously not conclusive for human protection,” they said.

“A further challenge for ZIKV vaccine efficacy trials will be to demonstrate fetal protection from [congenital Zika syndrome] after adult immunization. There should be a clear plan to readily deploy phase 3 trials for the most promising vaccines to emerge from phase 1 and 2 in the event of an outbreak, as was implemented for Ebola, including infant follow-up,” they emphasized.

The editorialists noted that the study did not include pregnant women, who represent a major target for immunization, but they said that vaccination of pregnant women against other neonatal pathogens such as influenza and tetanus has been effective. “Candidate ZIKV vaccines proven safe in phase 1 trials should immediately be assessed for safety and efficacy in pregnant women,” they said. Although Zika infections are not at epidemic levels currently, resurgence remains a possibility and the coronavirus pandemic “has taught us that preparedness for emerging infections is crucial,” they said.
 

Zika vaccine research is a challenge worth pursuing

“It is important to continue Zika vaccine research because of the unpredictable nature of that infection,” Kevin Ault, MD, of the University of Kansas, Kansas City, said in an interview. “Several times Zika has gained a foothold in unexposed and vulnerable populations,” Dr. Ault said.  “Additionally, there are some data about using this vector during pregnancy, and eventually this vaccine may prevent the birth defects associated with Zika infections during pregnancy, he noted.

Dr. Ault said he was not surprised by the study findings. “This is a promising early phase vaccine candidate, and this adenovirus vector has been used in other similar trials,” he said. Potential barriers to vaccine development include the challenge of conducting late phase clinical trials in pregnant women, he noted. “The relevant endpoint is going to be clinical disease, and one of the most critical populations is pregnant women,” he said. In addition, “later phase 3 trials would be conducted in a population where there is an ongoing Zika outbreak,” Dr. Ault emphasized.   

The study was supported by Janssen Vaccines and Infectious Diseases.

Dr. Chahroudi had no financial conflicts to disclose. Dr. Permar disclosed grants from Merck and Moderna unrelated to the current study. Dr. Ault had no relevant financial conflicts to disclose; he has served as an adviser to the Centers for Disease Control and Prevention, the World Medical Association, the National Vaccine Program Office, and the National Institute for Allergy and Infectious Diseases. He is a fellow of the Infectious Disease Society of American and a fellow of ACOG. 

Publications
Topics
Sections

A Zika virus vaccine candidate prompted antibody responses in 80% of individuals who received two doses in a phase 1 study.

ZikaVirus_web.jpg

Although Zika cases have declined in recent years, “geographic expansion of the Aedes aegypti mosquito to areas where population-level immunity is low poses a substantial risk for future epidemics,” wrote Nadine C. Salisch, PhD, of Janssen Vaccines and Prevention, Leiden, the Netherlands, and colleagues in a paper published in Annals of Internal Medicine.

No vaccine against Zika is yet available, although more than 10 candidates have been studied in preclinical trials to date, they said.

The researchers randomized 100 healthy adult volunteers to an experimental Zika vaccine candidate known as Ad26.ZIKV.001 in either one-dose or two-dose regimens of 5x1010 viral particles (low dose) or 1x1011 viral particles (high dose) or placebo. Approximately half (55%) of the participants were women, and 72% were White.

Approximately 80% of patients in both two-dose groups showed antibody responses for a year after vaccination. Geometric mean titers (GMTs) reached peak of 823.4 in the low-dose/low-dose group and 961.5 in the high-dose/high-dose group. At day 365, the GMTs for these groups were 68.7 and 87.0, respectively.

A single high-dose vaccine achieved a similar level of neutralizing antibody titers, but lower peak neutralizing responses than the two-dose strategies, the researchers noted.

Most of the reported adverse events were mild to moderate, and short lived; the most common were injection site pain or tenderness, headache, and fatigue, the researchers said. After the first vaccination, 75% of participants in the low-dose groups, 88% of participants in high-dose groups, and 45% of participants receiving placebo reported local adverse events. In addition, 73%, 83%, and 40% of the participants in the low-dose, high-dose, and placebo groups, respectively, reported systemic adverse events. Reports were similar after the second vaccination. Two serious adverse events not related to vaccination were reported; one case of right lower lobe pneumonia and one case of incomplete spontaneous abortion.

The researchers also explored protective efficacy through a nonlethal mouse challenge model. “Transfer of 6 mg of IgG from Ad26.ZIKV.001 vaccines conferred complete protection from viremia in most recipient animals, with statistically significantly decreased breakthrough rates and cumulative viral loads per group compared with placebo,” they said.

The study findings were limited by the inability to assess safety and immunogenicity in an endemic area, the researchers noted. However, “Ad26.ZIKV.001 induces potent ZIKV-specific neutralizing responses with durability of at least 1 year, which supports further clinical development if an unmet medical need reemerges,” they said. “In addition, these data underscore the performance of the Ad26 vaccine platform, which Janssen is using for different infectious diseases, including COVID-19,” they noted.
 

Ad26 vector platform shows consistency

“Development of the investigational Janssen Zika vaccine candidate was initiated in 2015, and while the incidence of Zika virus has declined since the 2015-2016 outbreak, spread of the ‘carrier’ Aedes aegypti mosquito to areas where population-level immunity is low poses a substantial risk for future epidemics,” lead author Dr. Salisch said in an interview. For this reason, researchers say the vaccine warrants further development should the need reemerge, she said.

“Our research has found that while a single higher-dose regimen had lower peak neutralizing responses than a two-dose regimen, it achieved a similar level of neutralizing antibody responses at 1 year, an encouraging finding that shows our vaccine may be a useful tool to curb Zika epidemics,” Dr. Salisch noted. “Previous experience with the Ad26 vector platform across our investigational vaccine programs have yielded similarly promising results, most recently with our investigational Janssen COVID-19 vaccine program, for which phase 3 data show a single-dose vaccine met all primary and key secondary endpoints,” she said.

“The biggest barrier [to further development of the candidate vaccine] is one that we actually consider ourselves fortunate to have: The very low incidence of reported Zika cases currently reported worldwide,” Dr. Salisch said. “However, the current Zika case rate can change at any time, and in the event the situation demands it, we are open to alternative regulatory pathways to help us glean the necessary insights on vaccine safety and efficacy to further advance the development of this candidate,” she emphasized.

As for additional research, “there are still questions surrounding Zika transmission and the pathomechanism of congenital Zika syndrome,” said Dr. Salisch. “Our hope is that a correlate of protection against Zika disease, and in particular against congenital Zika syndrome, can be identified,” she said.  

Consider pregnant women in next phase of research

“A major hurdle in ZIKV vaccine development is the inability to conduct large efficacy studies in the absence of a current outbreak,” Ann Chahroudi, MD, of Emory University, Atlanta, and Sallie Permar, MD, of Weill Cornell Medicine, New York, wrote in an accompanying editorial.

The current study provided some efficacy data using a mouse model, but “these data are obviously not conclusive for human protection,” they said.

“A further challenge for ZIKV vaccine efficacy trials will be to demonstrate fetal protection from [congenital Zika syndrome] after adult immunization. There should be a clear plan to readily deploy phase 3 trials for the most promising vaccines to emerge from phase 1 and 2 in the event of an outbreak, as was implemented for Ebola, including infant follow-up,” they emphasized.

The editorialists noted that the study did not include pregnant women, who represent a major target for immunization, but they said that vaccination of pregnant women against other neonatal pathogens such as influenza and tetanus has been effective. “Candidate ZIKV vaccines proven safe in phase 1 trials should immediately be assessed for safety and efficacy in pregnant women,” they said. Although Zika infections are not at epidemic levels currently, resurgence remains a possibility and the coronavirus pandemic “has taught us that preparedness for emerging infections is crucial,” they said.
 

Zika vaccine research is a challenge worth pursuing

“It is important to continue Zika vaccine research because of the unpredictable nature of that infection,” Kevin Ault, MD, of the University of Kansas, Kansas City, said in an interview. “Several times Zika has gained a foothold in unexposed and vulnerable populations,” Dr. Ault said.  “Additionally, there are some data about using this vector during pregnancy, and eventually this vaccine may prevent the birth defects associated with Zika infections during pregnancy, he noted.

Dr. Ault said he was not surprised by the study findings. “This is a promising early phase vaccine candidate, and this adenovirus vector has been used in other similar trials,” he said. Potential barriers to vaccine development include the challenge of conducting late phase clinical trials in pregnant women, he noted. “The relevant endpoint is going to be clinical disease, and one of the most critical populations is pregnant women,” he said. In addition, “later phase 3 trials would be conducted in a population where there is an ongoing Zika outbreak,” Dr. Ault emphasized.   

The study was supported by Janssen Vaccines and Infectious Diseases.

Dr. Chahroudi had no financial conflicts to disclose. Dr. Permar disclosed grants from Merck and Moderna unrelated to the current study. Dr. Ault had no relevant financial conflicts to disclose; he has served as an adviser to the Centers for Disease Control and Prevention, the World Medical Association, the National Vaccine Program Office, and the National Institute for Allergy and Infectious Diseases. He is a fellow of the Infectious Disease Society of American and a fellow of ACOG. 

A Zika virus vaccine candidate prompted antibody responses in 80% of individuals who received two doses in a phase 1 study.

ZikaVirus_web.jpg

Although Zika cases have declined in recent years, “geographic expansion of the Aedes aegypti mosquito to areas where population-level immunity is low poses a substantial risk for future epidemics,” wrote Nadine C. Salisch, PhD, of Janssen Vaccines and Prevention, Leiden, the Netherlands, and colleagues in a paper published in Annals of Internal Medicine.

No vaccine against Zika is yet available, although more than 10 candidates have been studied in preclinical trials to date, they said.

The researchers randomized 100 healthy adult volunteers to an experimental Zika vaccine candidate known as Ad26.ZIKV.001 in either one-dose or two-dose regimens of 5x1010 viral particles (low dose) or 1x1011 viral particles (high dose) or placebo. Approximately half (55%) of the participants were women, and 72% were White.

Approximately 80% of patients in both two-dose groups showed antibody responses for a year after vaccination. Geometric mean titers (GMTs) reached peak of 823.4 in the low-dose/low-dose group and 961.5 in the high-dose/high-dose group. At day 365, the GMTs for these groups were 68.7 and 87.0, respectively.

A single high-dose vaccine achieved a similar level of neutralizing antibody titers, but lower peak neutralizing responses than the two-dose strategies, the researchers noted.

Most of the reported adverse events were mild to moderate, and short lived; the most common were injection site pain or tenderness, headache, and fatigue, the researchers said. After the first vaccination, 75% of participants in the low-dose groups, 88% of participants in high-dose groups, and 45% of participants receiving placebo reported local adverse events. In addition, 73%, 83%, and 40% of the participants in the low-dose, high-dose, and placebo groups, respectively, reported systemic adverse events. Reports were similar after the second vaccination. Two serious adverse events not related to vaccination were reported; one case of right lower lobe pneumonia and one case of incomplete spontaneous abortion.

The researchers also explored protective efficacy through a nonlethal mouse challenge model. “Transfer of 6 mg of IgG from Ad26.ZIKV.001 vaccines conferred complete protection from viremia in most recipient animals, with statistically significantly decreased breakthrough rates and cumulative viral loads per group compared with placebo,” they said.

The study findings were limited by the inability to assess safety and immunogenicity in an endemic area, the researchers noted. However, “Ad26.ZIKV.001 induces potent ZIKV-specific neutralizing responses with durability of at least 1 year, which supports further clinical development if an unmet medical need reemerges,” they said. “In addition, these data underscore the performance of the Ad26 vaccine platform, which Janssen is using for different infectious diseases, including COVID-19,” they noted.
 

Ad26 vector platform shows consistency

“Development of the investigational Janssen Zika vaccine candidate was initiated in 2015, and while the incidence of Zika virus has declined since the 2015-2016 outbreak, spread of the ‘carrier’ Aedes aegypti mosquito to areas where population-level immunity is low poses a substantial risk for future epidemics,” lead author Dr. Salisch said in an interview. For this reason, researchers say the vaccine warrants further development should the need reemerge, she said.

“Our research has found that while a single higher-dose regimen had lower peak neutralizing responses than a two-dose regimen, it achieved a similar level of neutralizing antibody responses at 1 year, an encouraging finding that shows our vaccine may be a useful tool to curb Zika epidemics,” Dr. Salisch noted. “Previous experience with the Ad26 vector platform across our investigational vaccine programs have yielded similarly promising results, most recently with our investigational Janssen COVID-19 vaccine program, for which phase 3 data show a single-dose vaccine met all primary and key secondary endpoints,” she said.

“The biggest barrier [to further development of the candidate vaccine] is one that we actually consider ourselves fortunate to have: The very low incidence of reported Zika cases currently reported worldwide,” Dr. Salisch said. “However, the current Zika case rate can change at any time, and in the event the situation demands it, we are open to alternative regulatory pathways to help us glean the necessary insights on vaccine safety and efficacy to further advance the development of this candidate,” she emphasized.

As for additional research, “there are still questions surrounding Zika transmission and the pathomechanism of congenital Zika syndrome,” said Dr. Salisch. “Our hope is that a correlate of protection against Zika disease, and in particular against congenital Zika syndrome, can be identified,” she said.  

Consider pregnant women in next phase of research

“A major hurdle in ZIKV vaccine development is the inability to conduct large efficacy studies in the absence of a current outbreak,” Ann Chahroudi, MD, of Emory University, Atlanta, and Sallie Permar, MD, of Weill Cornell Medicine, New York, wrote in an accompanying editorial.

The current study provided some efficacy data using a mouse model, but “these data are obviously not conclusive for human protection,” they said.

“A further challenge for ZIKV vaccine efficacy trials will be to demonstrate fetal protection from [congenital Zika syndrome] after adult immunization. There should be a clear plan to readily deploy phase 3 trials for the most promising vaccines to emerge from phase 1 and 2 in the event of an outbreak, as was implemented for Ebola, including infant follow-up,” they emphasized.

The editorialists noted that the study did not include pregnant women, who represent a major target for immunization, but they said that vaccination of pregnant women against other neonatal pathogens such as influenza and tetanus has been effective. “Candidate ZIKV vaccines proven safe in phase 1 trials should immediately be assessed for safety and efficacy in pregnant women,” they said. Although Zika infections are not at epidemic levels currently, resurgence remains a possibility and the coronavirus pandemic “has taught us that preparedness for emerging infections is crucial,” they said.
 

Zika vaccine research is a challenge worth pursuing

“It is important to continue Zika vaccine research because of the unpredictable nature of that infection,” Kevin Ault, MD, of the University of Kansas, Kansas City, said in an interview. “Several times Zika has gained a foothold in unexposed and vulnerable populations,” Dr. Ault said.  “Additionally, there are some data about using this vector during pregnancy, and eventually this vaccine may prevent the birth defects associated with Zika infections during pregnancy, he noted.

Dr. Ault said he was not surprised by the study findings. “This is a promising early phase vaccine candidate, and this adenovirus vector has been used in other similar trials,” he said. Potential barriers to vaccine development include the challenge of conducting late phase clinical trials in pregnant women, he noted. “The relevant endpoint is going to be clinical disease, and one of the most critical populations is pregnant women,” he said. In addition, “later phase 3 trials would be conducted in a population where there is an ongoing Zika outbreak,” Dr. Ault emphasized.   

The study was supported by Janssen Vaccines and Infectious Diseases.

Dr. Chahroudi had no financial conflicts to disclose. Dr. Permar disclosed grants from Merck and Moderna unrelated to the current study. Dr. Ault had no relevant financial conflicts to disclose; he has served as an adviser to the Centers for Disease Control and Prevention, the World Medical Association, the National Vaccine Program Office, and the National Institute for Allergy and Infectious Diseases. He is a fellow of the Infectious Disease Society of American and a fellow of ACOG. 

Publications
Publications
Topics
Article Type
Sections
Article Source

FROM ANNALS OF INTERNAL MEDICINE

Disallow All Ads
Content Gating
No Gating (article Unlocked/Free)
Alternative CME
Disqus Comments
Default
Use ProPublica
Hide sidebar & use full width
render the right sidebar.
Conference Recap Checkbox
Not Conference Recap
Clinical Edge
Display the Slideshow in this Article
Medscape Article
Display survey writer

Zika virus syndrome may adversely affect children normocephalic at birth

Article Type
Changed
Thu, 07/16/2020 - 11:52

Microcephaly may be the hallmark of congenital Zika virus syndrome, but neurologic abnormalities also are common in normocephalic children exposed to the virus in utero, according to data from a large pediatric referral center in Rio de Janeiro.

zika_hist2_web.jpg

The retrospective analysis demonstrated that there is a “spectrum of clinical manifestations” in children with congenital Zika virus syndrome, including those who “had initially been perceived as developing normally based on [head circumference],” Jessica S. Cranston, a medical student at the University of California, Los Angeles, and associates wrote in JAMA Network Open.

Previous studies have described the poor clinical outcomes in Zika virus–exposed infants with microcephaly, but the current analysis evaluated head circumference (HC) as a continuous variable and stratified outcomes according to the presence or absence of microcephaly, they explained.

In the cohort of 215 children referred to Instituto Fernandes Figueira who had laboratory-confirmed antenatal Zika virus exposure, 53 had microcephaly (cephalic perimeter z score of less than –2 standard deviations) and 162 were normocephalic, the investigators said.

The children were evaluated monthly for the first 6 months of life and then every 3 months. Neurodevelopmental evaluation with the Bayley Scales of Infant and Toddler Development, Third Edition, between 6 months and 3 years of age showed that all of those with microcephaly had abnormal neuromotor findings. All but two of the children with microcephaly had abnormal neuroimaging results, and 38 (72%) had failure to thrive, they reported.

Among the children with normocephaly at birth, 68% had abnormal neurologic findings, including hyperreflexia (27%), abnormal tone (39%), and other congenital neuromotor signs (42%). Results of neuroimaging results, primarily in the form of transfontanelle ultrasonography, were abnormal in 29% of children with normocephaly.

“Infants with a larger birth HC, within the normocephalic range (±2 SDs), had higher overall neurodevelopmental scores on the Bayley-III assessment,” Sarah B. Mulkey, MD, PhD, said in an invited commentary, “whereas infants with a smaller birth HC within the normocephalic range had lower scores in the domains of cognitive and language functions.”

If HC measurements could be combined with early neurologic data such as the results of neuroimaging or a neurological exam, she suggested, it might provide “a practical tool to help determine risk for adverse clinical outcomes in a [Zika virus–]exposed infant at birth that can be widely used in a variety of follow-up settings.”

[embed:render:related:node:216209]

In nutritional assessments performed for 143 children with normocephaly, 51% had failure to thrive “because of neurologic repercussions leading to poor feeding,” Ms. Cranston and associates wrote, adding that 15 of the 73 (21%) infants with normocephaly and failure to thrive developed secondary microcephaly.

Altogether, 17 of the 162 (10.5%) children with normocephaly developed microcephaly during the follow-up, with the reverse – microcephaly resolving in infants who were microcephalic at birth – occurring in 4 of the 53 (7.5%) affected infants, indicating that “head circumference was not static,” they said.

“The trajectory of head growth is critical,” said Dr. Mulkey of the Prenatal Pediatrics Institute at Children’s National Hospital in Washington. “The neurologic outcome of a child who develops postnatal microcephaly would be very concerning compared with an infant who is born with normocephaly and maintains a steady HC percentile over time.”

HC is just one piece of the puzzle, however, since children with Zika virus syndrome may exhibit “a variety of manifestations and outcomes.” This lack of certainty suggests that “careful monitoring and evaluation of children with suspected exposure is essential for ensuring early detection of possible disabilities and referral to interventional services,” the investigators wrote.

The findings of this study “are both highly statistically significant and clinically significant,”said Kevin T. Powell, MD, PhD, a pediatric hospitalist and clinical ethics consultant living in St. Louis who was not associated with the study.

“While outcomes at birth are dichotomized into those with and without microcephaly, the developmental outcomes measured at 3 years of age are on a spectrum. ... Those with microcephaly tend to be more severely affected, but many infants with small but normal-sized heads are also mild to moderately impacted. The flip side is that 64% of infected babies ended up with average or better development” based on Bayley-III evaluations, said Dr. Powell, who is a member of the Pediatric News editorial advisory board.

The study was funded by grants from the National Institute of Allergy and Infectious Diseases, the National Eye Institute, and the Thrasher Foundation and by awards from Brazil’s National Council of Scientific and Technological Development; Fundação de Amparo à Pesquisa do Estado do Rio de Janeiro. Individual investigators received fees and grants from these and other organizations.

Dr. Mulkey received a contract from the Centers for Disease Control and Prevention for technical expertise for Zika virus studies and received support for Zika studies from the Thrasher Research Fund. Dr. Powell had no relevant financial disclosures.

SOURCE: Cranston JS et al. JAMA Netw Open. 2020 July 7;3(7):e209303.

Publications
Topics
Sections

Microcephaly may be the hallmark of congenital Zika virus syndrome, but neurologic abnormalities also are common in normocephalic children exposed to the virus in utero, according to data from a large pediatric referral center in Rio de Janeiro.

zika_hist2_web.jpg

The retrospective analysis demonstrated that there is a “spectrum of clinical manifestations” in children with congenital Zika virus syndrome, including those who “had initially been perceived as developing normally based on [head circumference],” Jessica S. Cranston, a medical student at the University of California, Los Angeles, and associates wrote in JAMA Network Open.

Previous studies have described the poor clinical outcomes in Zika virus–exposed infants with microcephaly, but the current analysis evaluated head circumference (HC) as a continuous variable and stratified outcomes according to the presence or absence of microcephaly, they explained.

In the cohort of 215 children referred to Instituto Fernandes Figueira who had laboratory-confirmed antenatal Zika virus exposure, 53 had microcephaly (cephalic perimeter z score of less than –2 standard deviations) and 162 were normocephalic, the investigators said.

The children were evaluated monthly for the first 6 months of life and then every 3 months. Neurodevelopmental evaluation with the Bayley Scales of Infant and Toddler Development, Third Edition, between 6 months and 3 years of age showed that all of those with microcephaly had abnormal neuromotor findings. All but two of the children with microcephaly had abnormal neuroimaging results, and 38 (72%) had failure to thrive, they reported.

Among the children with normocephaly at birth, 68% had abnormal neurologic findings, including hyperreflexia (27%), abnormal tone (39%), and other congenital neuromotor signs (42%). Results of neuroimaging results, primarily in the form of transfontanelle ultrasonography, were abnormal in 29% of children with normocephaly.

“Infants with a larger birth HC, within the normocephalic range (±2 SDs), had higher overall neurodevelopmental scores on the Bayley-III assessment,” Sarah B. Mulkey, MD, PhD, said in an invited commentary, “whereas infants with a smaller birth HC within the normocephalic range had lower scores in the domains of cognitive and language functions.”

If HC measurements could be combined with early neurologic data such as the results of neuroimaging or a neurological exam, she suggested, it might provide “a practical tool to help determine risk for adverse clinical outcomes in a [Zika virus–]exposed infant at birth that can be widely used in a variety of follow-up settings.”

[embed:render:related:node:216209]

In nutritional assessments performed for 143 children with normocephaly, 51% had failure to thrive “because of neurologic repercussions leading to poor feeding,” Ms. Cranston and associates wrote, adding that 15 of the 73 (21%) infants with normocephaly and failure to thrive developed secondary microcephaly.

Altogether, 17 of the 162 (10.5%) children with normocephaly developed microcephaly during the follow-up, with the reverse – microcephaly resolving in infants who were microcephalic at birth – occurring in 4 of the 53 (7.5%) affected infants, indicating that “head circumference was not static,” they said.

“The trajectory of head growth is critical,” said Dr. Mulkey of the Prenatal Pediatrics Institute at Children’s National Hospital in Washington. “The neurologic outcome of a child who develops postnatal microcephaly would be very concerning compared with an infant who is born with normocephaly and maintains a steady HC percentile over time.”

HC is just one piece of the puzzle, however, since children with Zika virus syndrome may exhibit “a variety of manifestations and outcomes.” This lack of certainty suggests that “careful monitoring and evaluation of children with suspected exposure is essential for ensuring early detection of possible disabilities and referral to interventional services,” the investigators wrote.

The findings of this study “are both highly statistically significant and clinically significant,”said Kevin T. Powell, MD, PhD, a pediatric hospitalist and clinical ethics consultant living in St. Louis who was not associated with the study.

“While outcomes at birth are dichotomized into those with and without microcephaly, the developmental outcomes measured at 3 years of age are on a spectrum. ... Those with microcephaly tend to be more severely affected, but many infants with small but normal-sized heads are also mild to moderately impacted. The flip side is that 64% of infected babies ended up with average or better development” based on Bayley-III evaluations, said Dr. Powell, who is a member of the Pediatric News editorial advisory board.

The study was funded by grants from the National Institute of Allergy and Infectious Diseases, the National Eye Institute, and the Thrasher Foundation and by awards from Brazil’s National Council of Scientific and Technological Development; Fundação de Amparo à Pesquisa do Estado do Rio de Janeiro. Individual investigators received fees and grants from these and other organizations.

Dr. Mulkey received a contract from the Centers for Disease Control and Prevention for technical expertise for Zika virus studies and received support for Zika studies from the Thrasher Research Fund. Dr. Powell had no relevant financial disclosures.

SOURCE: Cranston JS et al. JAMA Netw Open. 2020 July 7;3(7):e209303.

Microcephaly may be the hallmark of congenital Zika virus syndrome, but neurologic abnormalities also are common in normocephalic children exposed to the virus in utero, according to data from a large pediatric referral center in Rio de Janeiro.

zika_hist2_web.jpg

The retrospective analysis demonstrated that there is a “spectrum of clinical manifestations” in children with congenital Zika virus syndrome, including those who “had initially been perceived as developing normally based on [head circumference],” Jessica S. Cranston, a medical student at the University of California, Los Angeles, and associates wrote in JAMA Network Open.

Previous studies have described the poor clinical outcomes in Zika virus–exposed infants with microcephaly, but the current analysis evaluated head circumference (HC) as a continuous variable and stratified outcomes according to the presence or absence of microcephaly, they explained.

In the cohort of 215 children referred to Instituto Fernandes Figueira who had laboratory-confirmed antenatal Zika virus exposure, 53 had microcephaly (cephalic perimeter z score of less than –2 standard deviations) and 162 were normocephalic, the investigators said.

The children were evaluated monthly for the first 6 months of life and then every 3 months. Neurodevelopmental evaluation with the Bayley Scales of Infant and Toddler Development, Third Edition, between 6 months and 3 years of age showed that all of those with microcephaly had abnormal neuromotor findings. All but two of the children with microcephaly had abnormal neuroimaging results, and 38 (72%) had failure to thrive, they reported.

Among the children with normocephaly at birth, 68% had abnormal neurologic findings, including hyperreflexia (27%), abnormal tone (39%), and other congenital neuromotor signs (42%). Results of neuroimaging results, primarily in the form of transfontanelle ultrasonography, were abnormal in 29% of children with normocephaly.

“Infants with a larger birth HC, within the normocephalic range (±2 SDs), had higher overall neurodevelopmental scores on the Bayley-III assessment,” Sarah B. Mulkey, MD, PhD, said in an invited commentary, “whereas infants with a smaller birth HC within the normocephalic range had lower scores in the domains of cognitive and language functions.”

If HC measurements could be combined with early neurologic data such as the results of neuroimaging or a neurological exam, she suggested, it might provide “a practical tool to help determine risk for adverse clinical outcomes in a [Zika virus–]exposed infant at birth that can be widely used in a variety of follow-up settings.”

[embed:render:related:node:216209]

In nutritional assessments performed for 143 children with normocephaly, 51% had failure to thrive “because of neurologic repercussions leading to poor feeding,” Ms. Cranston and associates wrote, adding that 15 of the 73 (21%) infants with normocephaly and failure to thrive developed secondary microcephaly.

Altogether, 17 of the 162 (10.5%) children with normocephaly developed microcephaly during the follow-up, with the reverse – microcephaly resolving in infants who were microcephalic at birth – occurring in 4 of the 53 (7.5%) affected infants, indicating that “head circumference was not static,” they said.

“The trajectory of head growth is critical,” said Dr. Mulkey of the Prenatal Pediatrics Institute at Children’s National Hospital in Washington. “The neurologic outcome of a child who develops postnatal microcephaly would be very concerning compared with an infant who is born with normocephaly and maintains a steady HC percentile over time.”

HC is just one piece of the puzzle, however, since children with Zika virus syndrome may exhibit “a variety of manifestations and outcomes.” This lack of certainty suggests that “careful monitoring and evaluation of children with suspected exposure is essential for ensuring early detection of possible disabilities and referral to interventional services,” the investigators wrote.

The findings of this study “are both highly statistically significant and clinically significant,”said Kevin T. Powell, MD, PhD, a pediatric hospitalist and clinical ethics consultant living in St. Louis who was not associated with the study.

“While outcomes at birth are dichotomized into those with and without microcephaly, the developmental outcomes measured at 3 years of age are on a spectrum. ... Those with microcephaly tend to be more severely affected, but many infants with small but normal-sized heads are also mild to moderately impacted. The flip side is that 64% of infected babies ended up with average or better development” based on Bayley-III evaluations, said Dr. Powell, who is a member of the Pediatric News editorial advisory board.

The study was funded by grants from the National Institute of Allergy and Infectious Diseases, the National Eye Institute, and the Thrasher Foundation and by awards from Brazil’s National Council of Scientific and Technological Development; Fundação de Amparo à Pesquisa do Estado do Rio de Janeiro. Individual investigators received fees and grants from these and other organizations.

Dr. Mulkey received a contract from the Centers for Disease Control and Prevention for technical expertise for Zika virus studies and received support for Zika studies from the Thrasher Research Fund. Dr. Powell had no relevant financial disclosures.

SOURCE: Cranston JS et al. JAMA Netw Open. 2020 July 7;3(7):e209303.

Publications
Publications
Topics
Article Type
Click for Credit Status
Ready
Sections
Article Source

FROM JAMA NETWORK OPEN

Disallow All Ads
Content Gating
No Gating (article Unlocked/Free)
Alternative CME
Disqus Comments
Default
Use ProPublica
Hide sidebar & use full width
render the right sidebar.
Conference Recap Checkbox
Not Conference Recap
Clinical Edge
Display the Slideshow in this Article

Zika virus: Birth defects rose fourfold in U.S. hardest-hit areas

Article Type
Changed
Wed, 05/06/2020 - 12:47

 

The prevalence of Zika virus–related birth defects rose fourfold over preoutbreak levels in the areas of the United States hardest hit by the infection in 2016 and 2017, according to the Centers for Disease Control and Prevention.

144577_graphic_web.png

That spike in the prevalence of brain abnormalities and/or microcephaly or eye abnormalities without brain abnormalities came during January through March 2017, about 6 months after the Zika outbreak’s reported peak in the jurisdictions with widespread local transmission, Puerto Rico and the U.S. Virgin Islands, wrote Ashley N. Smoots, MPH, of the CDC’s National Center on Birth Defects and Developmental Disabilities and associates in the Morbidity and Mortality Weekly Report.

In those two territories, the prevalence of birth defects potentially related to Zika virus infection was 5.6 per 1,000 live births during January through March 2017, compared with 1.3 per 1,000 in January through March 2016, they reported.

In the southern areas of Florida and Texas, where there was limited local Zika transmission, the highest prevalence of birth defects, 2.7 per 1,000, occurred during October through December 2016, and was only slightly greater than the baseline rate of 2.2 per 1,000 in January through March 2016, the investigators reported.

Among the other 19 jurisdictions (including Illinois, Louisiana, New Jersey, South Carolina, and Virginia) involved in the analysis, the rate of Zika virus–related birth defects never reached any higher than the 1.7 per 1,000 recorded at the start of the study period in January through March 2016, they said.

“Population-based birth defects surveillance is critical for identifying infants and fetuses with birth defects potentially related to Zika virus regardless of whether Zika virus testing was conducted, especially given the high prevalence of asymptomatic disease. These data can be used to inform follow-up care and services as well as strengthen surveillance,” the investigators wrote.

SOURCE: Smoots AN et al. MMWR. 2020 Jan 24;69(3):67-71.

Publications
Topics
Sections

 

The prevalence of Zika virus–related birth defects rose fourfold over preoutbreak levels in the areas of the United States hardest hit by the infection in 2016 and 2017, according to the Centers for Disease Control and Prevention.

144577_graphic_web.png

That spike in the prevalence of brain abnormalities and/or microcephaly or eye abnormalities without brain abnormalities came during January through March 2017, about 6 months after the Zika outbreak’s reported peak in the jurisdictions with widespread local transmission, Puerto Rico and the U.S. Virgin Islands, wrote Ashley N. Smoots, MPH, of the CDC’s National Center on Birth Defects and Developmental Disabilities and associates in the Morbidity and Mortality Weekly Report.

In those two territories, the prevalence of birth defects potentially related to Zika virus infection was 5.6 per 1,000 live births during January through March 2017, compared with 1.3 per 1,000 in January through March 2016, they reported.

In the southern areas of Florida and Texas, where there was limited local Zika transmission, the highest prevalence of birth defects, 2.7 per 1,000, occurred during October through December 2016, and was only slightly greater than the baseline rate of 2.2 per 1,000 in January through March 2016, the investigators reported.

Among the other 19 jurisdictions (including Illinois, Louisiana, New Jersey, South Carolina, and Virginia) involved in the analysis, the rate of Zika virus–related birth defects never reached any higher than the 1.7 per 1,000 recorded at the start of the study period in January through March 2016, they said.

“Population-based birth defects surveillance is critical for identifying infants and fetuses with birth defects potentially related to Zika virus regardless of whether Zika virus testing was conducted, especially given the high prevalence of asymptomatic disease. These data can be used to inform follow-up care and services as well as strengthen surveillance,” the investigators wrote.

SOURCE: Smoots AN et al. MMWR. 2020 Jan 24;69(3):67-71.

 

The prevalence of Zika virus–related birth defects rose fourfold over preoutbreak levels in the areas of the United States hardest hit by the infection in 2016 and 2017, according to the Centers for Disease Control and Prevention.

144577_graphic_web.png

That spike in the prevalence of brain abnormalities and/or microcephaly or eye abnormalities without brain abnormalities came during January through March 2017, about 6 months after the Zika outbreak’s reported peak in the jurisdictions with widespread local transmission, Puerto Rico and the U.S. Virgin Islands, wrote Ashley N. Smoots, MPH, of the CDC’s National Center on Birth Defects and Developmental Disabilities and associates in the Morbidity and Mortality Weekly Report.

In those two territories, the prevalence of birth defects potentially related to Zika virus infection was 5.6 per 1,000 live births during January through March 2017, compared with 1.3 per 1,000 in January through March 2016, they reported.

In the southern areas of Florida and Texas, where there was limited local Zika transmission, the highest prevalence of birth defects, 2.7 per 1,000, occurred during October through December 2016, and was only slightly greater than the baseline rate of 2.2 per 1,000 in January through March 2016, the investigators reported.

Among the other 19 jurisdictions (including Illinois, Louisiana, New Jersey, South Carolina, and Virginia) involved in the analysis, the rate of Zika virus–related birth defects never reached any higher than the 1.7 per 1,000 recorded at the start of the study period in January through March 2016, they said.

“Population-based birth defects surveillance is critical for identifying infants and fetuses with birth defects potentially related to Zika virus regardless of whether Zika virus testing was conducted, especially given the high prevalence of asymptomatic disease. These data can be used to inform follow-up care and services as well as strengthen surveillance,” the investigators wrote.

SOURCE: Smoots AN et al. MMWR. 2020 Jan 24;69(3):67-71.

Publications
Publications
Topics
Article Type
Sections
Article Source

FROM MMWR

Disallow All Ads
Content Gating
No Gating (article Unlocked/Free)
Alternative CME
Disqus Comments
Default
Use ProPublica
Hide sidebar & use full width
render the right sidebar.

In utero Zika exposure can have delayed consequences

Article Type
Changed
Tue, 07/21/2020 - 14:18

 

– Evidence continues to mount that infants born to moms infected with Zika virus during pregnancy can have neurodevelopmental abnormalities as they age even if they showed no defects at birth, based on follow-up of 890 Colombian children tracked by epidemiologists from the U.S. Centers for Disease Control and Prevention.

Honein_Margaret_ATLANTA_web.jpg
Dr. Margaret Honein

Among the 890 neonates born to mothers apparently infected with Zika during pregnancy and followed for up to 2 years, 40 of the 852 (5%) without a detectable birth defect at delivery went on to show some type of neurodevelopmental sequelae during up to 24 months of age, Margaret Honein, PhD, said at an annual scientific meeting on infectious diseases.

In addition, among the children without birth defects at delivery who received follow-up examinations out to about 2 years, the incidence of “alerts” for possible neurodevelopmental issues was 15%-20% for each of the four domains studied (gross motor, fine motor, hearing and language, and personal and social functions), said Dr. Honein, an epidemiologist and chief of the birth defects branch of the CDC. In contrast, 17 of the 38 children (45%) followed who had identifiable birth defects at delivery also showed neurodevelopmental abnormalities when reexamined as long as 2 years after birth. These possible neurodevelopmental abnormalities, designated as alerts, were identified in comparison with a contemporaneous cohort of children born to uninfected mothers in the same regions of Colombia and assessed by the CDC researchers.

This cohort of children born to mothers who became infected with Zika virus during the 2016 Colombian epidemic will not undergo any planned, additional follow-up beyond the initial 2 years, Dr. Honein noted.

Mulkey_Sarah_B_DC_web.jpg
Dr. Sarah B. Mulkey

The findings she reported were consistent with observations from a much smaller cohort of 70 infants born to Colombian mothers infected with Zika virus while pregnant who had a normal head circumference and a normal clinical examination at delivery. When assessed once or twice 4-18 months after birth, these 70 infants showed an overall greater than one standard deviation (z-score) drop in their scores on the Warner Initial Developmental Evaluation of Adaptive and Functional Skills (WIDEA) metric by 12 months after birth and continuing out to 18 months, said Sarah B. Mulkey, MD, a fetal-neonatal neurologist at Children’s National Health System in Washington. These deficits were especially pronounced in the mobility and social cognition domains of the four-domain WIDEA metric. The social cognition domain is an important predictor of later problems with executive function and other neurologic disorders, Dr. Mulkey said while reporting her findings in a separate talk at the meeting. She acknowledged that the analysis was flawed by comparing the WIDEA outcomes of the Zika virus–exposed children to healthy children from either inner-city Chicago or Canada. Dr. Mulkey said that she and her associates plan to characterize a population of Zika virus–unexposed children in Colombia to use for future comparisons.

[embed:render:related:node:199740]

The study reported by Dr. Honein involved an enhanced surveillance program launched by the CDC in 2016 in three regions of Colombia and included 1,190 pregnancies accompanied by Zika symptoms in the mother and with a reported pregnancy outcome, including 1,185 live births. Nearly half of the Zika infections occurred during the first trimester, and 34% occurred during the second trimester. However, fewer than a third of the pregnant women underwent some type of laboratory testing to confirm their infection, either by serology or by a DNA-based assay, and of these 28% had a positive finding. Dr. Honein cautioned that many of the specimens that tested negative for Zika virus may have been false negatives.

The birth defects identified among the infants born from an apparently affected pregnancy included brain abnormalities, eye anomalies, and microcephaly, with 5% of the 1,185 live births showing one or more of these outcomes. The neurodevelopmental deficits identified during follow-up of 890 of the children out to 2 years included seizures; abnormalities of tone, movement, or swallowing; and impairments of vision or hearing.

Meeting/Event
Issue
Neurology Reviews- 27(11)
Publications
Topics
Sections
Meeting/Event
Meeting/Event

 

– Evidence continues to mount that infants born to moms infected with Zika virus during pregnancy can have neurodevelopmental abnormalities as they age even if they showed no defects at birth, based on follow-up of 890 Colombian children tracked by epidemiologists from the U.S. Centers for Disease Control and Prevention.

Honein_Margaret_ATLANTA_web.jpg
Dr. Margaret Honein

Among the 890 neonates born to mothers apparently infected with Zika during pregnancy and followed for up to 2 years, 40 of the 852 (5%) without a detectable birth defect at delivery went on to show some type of neurodevelopmental sequelae during up to 24 months of age, Margaret Honein, PhD, said at an annual scientific meeting on infectious diseases.

In addition, among the children without birth defects at delivery who received follow-up examinations out to about 2 years, the incidence of “alerts” for possible neurodevelopmental issues was 15%-20% for each of the four domains studied (gross motor, fine motor, hearing and language, and personal and social functions), said Dr. Honein, an epidemiologist and chief of the birth defects branch of the CDC. In contrast, 17 of the 38 children (45%) followed who had identifiable birth defects at delivery also showed neurodevelopmental abnormalities when reexamined as long as 2 years after birth. These possible neurodevelopmental abnormalities, designated as alerts, were identified in comparison with a contemporaneous cohort of children born to uninfected mothers in the same regions of Colombia and assessed by the CDC researchers.

This cohort of children born to mothers who became infected with Zika virus during the 2016 Colombian epidemic will not undergo any planned, additional follow-up beyond the initial 2 years, Dr. Honein noted.

Mulkey_Sarah_B_DC_web.jpg
Dr. Sarah B. Mulkey

The findings she reported were consistent with observations from a much smaller cohort of 70 infants born to Colombian mothers infected with Zika virus while pregnant who had a normal head circumference and a normal clinical examination at delivery. When assessed once or twice 4-18 months after birth, these 70 infants showed an overall greater than one standard deviation (z-score) drop in their scores on the Warner Initial Developmental Evaluation of Adaptive and Functional Skills (WIDEA) metric by 12 months after birth and continuing out to 18 months, said Sarah B. Mulkey, MD, a fetal-neonatal neurologist at Children’s National Health System in Washington. These deficits were especially pronounced in the mobility and social cognition domains of the four-domain WIDEA metric. The social cognition domain is an important predictor of later problems with executive function and other neurologic disorders, Dr. Mulkey said while reporting her findings in a separate talk at the meeting. She acknowledged that the analysis was flawed by comparing the WIDEA outcomes of the Zika virus–exposed children to healthy children from either inner-city Chicago or Canada. Dr. Mulkey said that she and her associates plan to characterize a population of Zika virus–unexposed children in Colombia to use for future comparisons.

[embed:render:related:node:199740]

The study reported by Dr. Honein involved an enhanced surveillance program launched by the CDC in 2016 in three regions of Colombia and included 1,190 pregnancies accompanied by Zika symptoms in the mother and with a reported pregnancy outcome, including 1,185 live births. Nearly half of the Zika infections occurred during the first trimester, and 34% occurred during the second trimester. However, fewer than a third of the pregnant women underwent some type of laboratory testing to confirm their infection, either by serology or by a DNA-based assay, and of these 28% had a positive finding. Dr. Honein cautioned that many of the specimens that tested negative for Zika virus may have been false negatives.

The birth defects identified among the infants born from an apparently affected pregnancy included brain abnormalities, eye anomalies, and microcephaly, with 5% of the 1,185 live births showing one or more of these outcomes. The neurodevelopmental deficits identified during follow-up of 890 of the children out to 2 years included seizures; abnormalities of tone, movement, or swallowing; and impairments of vision or hearing.

 

– Evidence continues to mount that infants born to moms infected with Zika virus during pregnancy can have neurodevelopmental abnormalities as they age even if they showed no defects at birth, based on follow-up of 890 Colombian children tracked by epidemiologists from the U.S. Centers for Disease Control and Prevention.

Honein_Margaret_ATLANTA_web.jpg
Dr. Margaret Honein

Among the 890 neonates born to mothers apparently infected with Zika during pregnancy and followed for up to 2 years, 40 of the 852 (5%) without a detectable birth defect at delivery went on to show some type of neurodevelopmental sequelae during up to 24 months of age, Margaret Honein, PhD, said at an annual scientific meeting on infectious diseases.

In addition, among the children without birth defects at delivery who received follow-up examinations out to about 2 years, the incidence of “alerts” for possible neurodevelopmental issues was 15%-20% for each of the four domains studied (gross motor, fine motor, hearing and language, and personal and social functions), said Dr. Honein, an epidemiologist and chief of the birth defects branch of the CDC. In contrast, 17 of the 38 children (45%) followed who had identifiable birth defects at delivery also showed neurodevelopmental abnormalities when reexamined as long as 2 years after birth. These possible neurodevelopmental abnormalities, designated as alerts, were identified in comparison with a contemporaneous cohort of children born to uninfected mothers in the same regions of Colombia and assessed by the CDC researchers.

This cohort of children born to mothers who became infected with Zika virus during the 2016 Colombian epidemic will not undergo any planned, additional follow-up beyond the initial 2 years, Dr. Honein noted.

Mulkey_Sarah_B_DC_web.jpg
Dr. Sarah B. Mulkey

The findings she reported were consistent with observations from a much smaller cohort of 70 infants born to Colombian mothers infected with Zika virus while pregnant who had a normal head circumference and a normal clinical examination at delivery. When assessed once or twice 4-18 months after birth, these 70 infants showed an overall greater than one standard deviation (z-score) drop in their scores on the Warner Initial Developmental Evaluation of Adaptive and Functional Skills (WIDEA) metric by 12 months after birth and continuing out to 18 months, said Sarah B. Mulkey, MD, a fetal-neonatal neurologist at Children’s National Health System in Washington. These deficits were especially pronounced in the mobility and social cognition domains of the four-domain WIDEA metric. The social cognition domain is an important predictor of later problems with executive function and other neurologic disorders, Dr. Mulkey said while reporting her findings in a separate talk at the meeting. She acknowledged that the analysis was flawed by comparing the WIDEA outcomes of the Zika virus–exposed children to healthy children from either inner-city Chicago or Canada. Dr. Mulkey said that she and her associates plan to characterize a population of Zika virus–unexposed children in Colombia to use for future comparisons.

[embed:render:related:node:199740]

The study reported by Dr. Honein involved an enhanced surveillance program launched by the CDC in 2016 in three regions of Colombia and included 1,190 pregnancies accompanied by Zika symptoms in the mother and with a reported pregnancy outcome, including 1,185 live births. Nearly half of the Zika infections occurred during the first trimester, and 34% occurred during the second trimester. However, fewer than a third of the pregnant women underwent some type of laboratory testing to confirm their infection, either by serology or by a DNA-based assay, and of these 28% had a positive finding. Dr. Honein cautioned that many of the specimens that tested negative for Zika virus may have been false negatives.

The birth defects identified among the infants born from an apparently affected pregnancy included brain abnormalities, eye anomalies, and microcephaly, with 5% of the 1,185 live births showing one or more of these outcomes. The neurodevelopmental deficits identified during follow-up of 890 of the children out to 2 years included seizures; abnormalities of tone, movement, or swallowing; and impairments of vision or hearing.

Issue
Neurology Reviews- 27(11)
Issue
Neurology Reviews- 27(11)
Publications
Publications
Topics
Article Type
Sections
Article Source

REPORTING FROM ID WEEK 2019

Citation Override
Publish date: October 16, 2019
Disallow All Ads
Content Gating
No Gating (article Unlocked/Free)
Alternative CME
Disqus Comments
Default
Use ProPublica
Hide sidebar & use full width
render the right sidebar.

FDA permits marketing of Zika diagnostic test

Article Type
Changed
Fri, 05/24/2019 - 09:33

 

A Zika virus test initially authorized only for emergency use has now been approved for use in nonemergency situations, according to a statement from the Food and Drug Administration.

FDA_icon3_web.jpg

The ZIKV Detect 2.0 IgM Capture ELISA (enzyme-linked immunosorbent assay) is now authorized for use in patients with clinical signs and symptoms consistent with Zika virus infection, as well as those who meet the Centers for Disease Control and Prevention epidemiologic criteria, including residence in or travel to a region deemed high risk because of active Zika transmission.

The test is designed to identify Zika antibodies in the blood, and the FDA cited a review of clinical trial data and analytic data to support the test’s safety and effectiveness.

“Results of this test are intended to be used in conjunction with clinical observations, patient history, epidemiological information, and other laboratory evidence to make patient management decisions,” the FDA stated.

The ZIKV Detect 2.0 IgM Capture ELISA, initially approved in 2016, had been authorized by the FDA only for emergency use, along with other tests for detecting Zika virus, under the under the FDA’s Emergency Use Authorization (EUA) authority.

The FDA granted marketing authorization to test manufacturer InBios International.

The FDA is communicating with four EUA holders to gather information to evaluate whether the FDA should revoke the EUAs for these specific tests. The marketing authorization of ZIKV Detect 2.0 IgM Capture ELISA does not impact the availability of the other 14 Zika nucleic acid diagnostics available under EUAs.

The Zika virus, typically transmitted by an infected mosquito, is especially a risk for pregnant women as the fetus may experience neurologic complications and microcephaly as a result of infection.

Publications
Topics
Sections

 

A Zika virus test initially authorized only for emergency use has now been approved for use in nonemergency situations, according to a statement from the Food and Drug Administration.

FDA_icon3_web.jpg

The ZIKV Detect 2.0 IgM Capture ELISA (enzyme-linked immunosorbent assay) is now authorized for use in patients with clinical signs and symptoms consistent with Zika virus infection, as well as those who meet the Centers for Disease Control and Prevention epidemiologic criteria, including residence in or travel to a region deemed high risk because of active Zika transmission.

The test is designed to identify Zika antibodies in the blood, and the FDA cited a review of clinical trial data and analytic data to support the test’s safety and effectiveness.

“Results of this test are intended to be used in conjunction with clinical observations, patient history, epidemiological information, and other laboratory evidence to make patient management decisions,” the FDA stated.

The ZIKV Detect 2.0 IgM Capture ELISA, initially approved in 2016, had been authorized by the FDA only for emergency use, along with other tests for detecting Zika virus, under the under the FDA’s Emergency Use Authorization (EUA) authority.

The FDA granted marketing authorization to test manufacturer InBios International.

The FDA is communicating with four EUA holders to gather information to evaluate whether the FDA should revoke the EUAs for these specific tests. The marketing authorization of ZIKV Detect 2.0 IgM Capture ELISA does not impact the availability of the other 14 Zika nucleic acid diagnostics available under EUAs.

The Zika virus, typically transmitted by an infected mosquito, is especially a risk for pregnant women as the fetus may experience neurologic complications and microcephaly as a result of infection.

 

A Zika virus test initially authorized only for emergency use has now been approved for use in nonemergency situations, according to a statement from the Food and Drug Administration.

FDA_icon3_web.jpg

The ZIKV Detect 2.0 IgM Capture ELISA (enzyme-linked immunosorbent assay) is now authorized for use in patients with clinical signs and symptoms consistent with Zika virus infection, as well as those who meet the Centers for Disease Control and Prevention epidemiologic criteria, including residence in or travel to a region deemed high risk because of active Zika transmission.

The test is designed to identify Zika antibodies in the blood, and the FDA cited a review of clinical trial data and analytic data to support the test’s safety and effectiveness.

“Results of this test are intended to be used in conjunction with clinical observations, patient history, epidemiological information, and other laboratory evidence to make patient management decisions,” the FDA stated.

The ZIKV Detect 2.0 IgM Capture ELISA, initially approved in 2016, had been authorized by the FDA only for emergency use, along with other tests for detecting Zika virus, under the under the FDA’s Emergency Use Authorization (EUA) authority.

The FDA granted marketing authorization to test manufacturer InBios International.

The FDA is communicating with four EUA holders to gather information to evaluate whether the FDA should revoke the EUAs for these specific tests. The marketing authorization of ZIKV Detect 2.0 IgM Capture ELISA does not impact the availability of the other 14 Zika nucleic acid diagnostics available under EUAs.

The Zika virus, typically transmitted by an infected mosquito, is especially a risk for pregnant women as the fetus may experience neurologic complications and microcephaly as a result of infection.

Publications
Publications
Topics
Article Type
Sections
Disallow All Ads
Content Gating
No Gating (article Unlocked/Free)
Alternative CME
Disqus Comments
Default
Use ProPublica
Hide sidebar & use full width
render the right sidebar.