Zika Virus (ZIKV): a review of proposed mechanisms of transmission and associated congenital abnormalities.

IF 1.9 Q4 CELL BIOLOGY American journal of stem cells Pub Date : 2017-07-25 eCollection Date: 2017-01-01
Sruti K Desai, Steven D Hartman, Shilpa Jayarajan, Stephanie Liu, G Ian Gallicano
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Abstract

Zika virus (ZIKV) has been of major international public health concern following large outbreaks in the Americas occurring in 2015-2016. Most notably, ZIKV has been seen to pose dangers in pregnancy due to its association with congenital abnormalities such as microcephaly. Numerous experimental approaches have been taken to address how the virus can cross the placenta, alter normal fetal development, and disrupt specific cellular functions. Many areas concerning the mechanisms of transmission, especially from mother to fetus, are largely unknown but demand further research. Several promising new studies are presented that provide insight into possible mechanisms of transmission, different cell types affected, and immune responses towards the virus. By aiming to better understand the processes behind altered fetal neuronal development due to ZIKV infection, the hope is to find ways to increase protection of the fetus and prevent congenital abnormalities such as microcephaly. As ZIKV infection is spreading to increasingly more areas and bringing harmful outcomes and birth defects with it, it is imperative to identify the mechanisms of transmitting this infectious agent, consider different genetic backgrounds of hosts and strain types, and navigate methods to protect those affected from the detrimental effects of this newly emerging virus.

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寨卡病毒(ZIKV):对提出的传播机制和相关先天性异常的综述。
自2015-2016年在美洲发生大规模疫情以来,寨卡病毒(ZIKV)一直是一个主要的国际公共卫生问题。最值得注意的是,由于寨卡病毒与小头畸形等先天性异常有关,已被认为对妊娠构成危险。已经采取了许多实验方法来解决病毒如何穿过胎盘,改变正常的胎儿发育,并破坏特定的细胞功能。关于传播机制的许多领域,特别是从母亲到胎儿的传播机制,在很大程度上是未知的,但需要进一步研究。提出了一些有希望的新研究,为可能的传播机制、受影响的不同细胞类型和对病毒的免疫反应提供了见解。通过更好地了解由于寨卡病毒感染而改变的胎儿神经元发育背后的过程,希望找到增加胎儿保护和预防小头畸形等先天性异常的方法。由于寨卡病毒感染正在向越来越多的地区传播,并带来有害后果和出生缺陷,因此必须确定这种传染因子的传播机制,考虑宿主和毒株类型的不同遗传背景,并找到保护受影响人群免受这种新出现病毒有害影响的方法。
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