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Modelling Zika Virus Infection of the Developing Human Brain In Vitro Using Stem Cell Derived Cerebral Organoids
Published on: September 19, 2017
Clinical and Preclinical Evidence for Adverse Neurodevelopment after Postnatal Zika Virus Infection
Jessica Raper1,2, Ann Chahroudi1,2,3
1Yerkes National Primate Research Center, Emory University, Atlanta, GA 30329, USA.
Insights
Zika virus (ZIKV) infection in infants can negatively impact neurologic development. Research highlights the need for further study into ZIKV
Area of Science:
- Neuroscience
- Virology
- Pediatrics
Background:
- Zika virus (ZIKV) infection during pregnancy caused severe infant outcomes.
- Limited data exist on ZIKV's effects on infant neurodevelopment post-birth.
- The developing infant brain is vulnerable to neurotropic viruses like ZIKV.
Purpose of the Study:
- To review current knowledge on early postnatal ZIKV infection.
- To highlight the importance of understanding ZIKV's impact on infant neurodevelopment.
- To identify areas for future clinical research in affected children.
Main Methods:
- Literature review of clinical and preclinical studies on early life ZIKV infection.
- Analysis of emerging clinical evidence and animal model data.
- Synthesis of findings to inform future research directions.
Main Results:
- Emerging clinical data suggest postnatal ZIKV infection can lead to adverse neurologic outcomes.
- Animal models demonstrate ZIKV's neurotropic potential and impact on brain development.
- Clinical data on postnatal ZIKV infection in children remain scarce.
Conclusions:
- Postnatal ZIKV infection poses a risk to infant neurodevelopment.
- Animal models are crucial for understanding potential long-term effects.
- Future clinical studies should focus on behavioral, cognitive, and motor assessments in infants exposed to ZIKV.
Abstract:
Although the Zika virus (ZIKV) typically causes mild or no symptoms in adults, during the 2015-2016 outbreak, ZIKV infection in pregnancy resulted in a spectrum of diseases in infants, including birth defects and neurodevelopmental disorders identified in childhood. While intense clinical and basic science research has focused on the neurodevelopmental outcomes of prenatal ZIKV infection, less is known about the consequences of infection during early life. Considering the neurotropism of ZIKV and the rapidly-developing postnatal brain, it is important to understand how infection during infancy may disrupt neurodevelopment. This paper reviews the current knowledge regarding early postnatal ZIKV infection. Emerging clinical evidence supports the hypothesis that ZIKV infection during infancy can result in negative neurologic consequences. However, clinical data regarding postnatal ZIKV infection in children are limited; as such, animal models play an important role in understanding the potential complications of ZIKV infection related to the vulnerable developing brain. Preclinical data provide insight into the potential behavioral, cognitive, and motor domains that clinical studies should examine in pediatric populations exposed to ZIKV during infancy.
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