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寨卡病毒早期和近期分离株在小鼠大脑发育过程中的复制。

Replication of early and recent Zika virus isolates throughout mouse brain development.

机构信息

Department of Microbiology and Immunology, Columbia University College of Physicians and Surgeons, New York, NY 10032;

Department of Pathology and Cell Biology, Columbia University College of Physicians and Surgeons, New York, NY 10032.

出版信息

Proc Natl Acad Sci U S A. 2017 Nov 14;114(46):12273-12278. doi: 10.1073/pnas.1714624114. Epub 2017 Oct 31.

Abstract

Fetal infection with Zika virus (ZIKV) can lead to congenital Zika virus syndrome (cZVS), which includes cortical malformations and microcephaly. The aspects of cortical development that are affected during virus infection are unknown. Using organotypic brain slice cultures generated from embryonic mice of various ages, sites of ZIKV replication including the neocortical proliferative zone and radial columns, as well as the developing midbrain, were identified. The infected radial units are surrounded by uninfected cells undergoing apoptosis, suggesting that programmed cell death may limit viral dissemination in the brain and may constrain virus-associated injury. Therefore, a critical aspect of ZIKV-induced neuropathology may be defined by death of uninfected cells. All ZIKV isolates assayed replicated efficiently in early and midgestation cultures, and two isolates examined replicated in late-gestation tissue. Alteration of neocortical cytoarchitecture, such as disruption of the highly elongated basal processes of the radial glial progenitor cells and impairment of postmitotic neuronal migration, were also observed. These data suggest that all lineages of ZIKV tested are neurotropic, and that ZIKV infection interferes with multiple aspects of neurodevelopment that contribute to the complexity of cZVS.

摘要

寨卡病毒(ZIKV)可导致胎儿感染,引发先天性寨卡病毒综合征(cZVS),包括皮质畸形和小头症。目前尚不清楚病毒感染会影响哪些皮质发育方面。利用源自不同胎龄胚胎小鼠的器官型脑片培养物,确定了 ZIKV 复制的部位,包括新皮质增殖区和放射状柱,以及正在发育的中脑。受感染的放射状单位被未感染的细胞所包围,这些细胞正在发生细胞凋亡,表明细胞程序性死亡可能限制了病毒在大脑中的传播,并可能限制与病毒相关的损伤。因此,ZIKV 诱导的神经病理学的一个关键方面可能是由未感染细胞的死亡所定义的。所有测试的 ZIKV 分离株在早期和中期妊娠培养物中均能有效地复制,并且检查的两种分离株在晚期妊娠组织中复制。还观察到新皮质细胞结构的改变,例如放射状神经胶质祖细胞的基底突起的高度拉长被破坏以及有丝分裂后神经元迁移受损。这些数据表明,测试的 ZIKV 的所有谱系都是神经营养性的,并且 ZIKV 感染干扰了导致 cZVS 复杂性的多个神经发育方面。

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