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首页> 外文期刊>Frontiers in Immunology >A New In Vivo Model to Study Protective Immunity to Zika Virus Infection in Mice With Intact Type I Interferon Signaling
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A New In Vivo Model to Study Protective Immunity to Zika Virus Infection in Mice With Intact Type I Interferon Signaling

机译:一种新的体内模型,用于研究具有完整I型干扰素信号的小鼠对寨卡病毒感染的保护性免疫

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摘要

The association between recent Zika virus (ZIKV) infection and neurological complications, microcephaly in the fetus, and Guillain–Barré syndrome in adults underscores the necessity for a protective vaccine. Rational vaccine development requires an in-depth understanding of the mechanisms which could protect against infection with this virus. However, so far, such an analysis has been hampered by the absence of a suitable small animal model. Unlike the situation in humans, ZIKV only replicates effectively in the peripheral organs of mice, if type I IFN signaling is interrupted. As type I IFN also impacts the adaptive immune response, mice with such a defect are not optimal for a comprehensive immunological analysis. In this report, we show that even in wild-type (WT) mice i.c. infection with low doses of virus causes marked local virus replication and lethal encephalitis in na?ve mice. Furthermore, peripheral infection of WT mice with low doses of virus induces a significant immune response, which provides long-lasting protection of WT mice from a fatal outcome of subsequent i.c. challenge. Therefore, combining peripheral priming with later i.c. challenge represents a new approach for studying the adaptive immune response to ZIKV in mice with an intact type I IFN response. In this study, we focused on the mechanisms underlying resistance to reinfection. Using a combination of adoptive transfer, antibody-based cell depletion, and gene targeting, we show that the key protective factor in type I IFN replete mice is humoral immunity. CD8 T cells are not essential in mice with preformed specific antibodies, but under conditions where initial antibody levels are low, effector CD8 T cells may play a role as a back-up system. These results have important implications for our understanding of natural immunity to ZIKV infection and for Zika vaccine design.
机译:近期寨卡病毒(ZIKV)感染与神经系统并发症,胎儿小头畸形和成人Guillain-Barré综合征之间的关联强调了保护性疫苗的必要性。合理的疫苗开发需要深入了解可以预防这种病毒感染的机制。然而,到目前为止,由于缺乏合适的小动物模型,这种分析受到了阻碍。与人的情况不同,如果I型IFN信号传导中断,ZIKV仅在小鼠的外周器官中有效复制。由于I型干扰素也会影响适应性免疫反应,因此具有这种缺陷的小鼠对于进行全面的免疫学分析并不是最佳的。在这份报告中,我们证明了即使在野生型(WT)小鼠中低剂量病毒感染可在幼稚小鼠中引起明显的局部病毒复制和致命性脑炎。此外,用低剂量的病毒对野生型小鼠进行外围感染诱导了显着的免疫反应,从而为野生型小鼠提供了长期保护,使其免受随后的腹膜内注射的致命后果。挑战。因此,将外围灌注与后来的集成电路相结合。挑战代表了一种研究具有完整I型IFN反应的小鼠对ZIKV的适应性免疫反应的新方法。在这项研究中,我们集中于对再感染的抗性机制。通过采用过继转移,基于抗体的细胞耗竭和基因靶向的组合,我们表明I型IFN充足小鼠的关键保护因子是体液免疫。 CD8 T细胞在具有预先形成的特异性抗体的小鼠中不是必需的,但在初始抗体水平较低的条件下,效应CD8 T细胞可能起着备用系统的作用。这些结果对我们对ZIKV感染的天然免疫力和Zika疫苗设计的理解具有重要意义。

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