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The Innate Immune Playbook for Restricting West Nile Virus Infection

机译:限制西尼罗河病毒感染的先天免疫剧本

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摘要

West Nile virus (WNV) is an emerging mosquito-borne flavivirus that causes annual epidemics of encephalitic disease throughout the world. Despite the ongoing risk to public health, no approved vaccines or therapies exist for use in humans to prevent or combat WNV infection. The innate immune response is critical for controlling WNV replication, limiting virus-induced pathology, and programming protective humoral and cell-mediated immunity to WNV infection. The RIG-I like receptors, Toll-like receptors, and Nod-like receptors detect and respond to WNV by inducing a potent antiviral defense program, characterized by production of type I IFN, IL-1β and expression of antiviral effector genes. Recent research efforts have focused on uncovering the mechanisms of innate immune sensing, antiviral effector genes that inhibit WNV, and countermeasures employed by WNV to antagonize innate immune cellular defenses. In this review, we highlight the major research findings pertaining to innate immune regulation of WNV infection.
机译:西尼罗河病毒(WNV)是一种新兴的蚊媒黄病毒,每年在世界范围内引起脑病的流行。尽管存在持续的公共卫生风险,但尚无批准的疫苗或疗法可用于人类预防或抵抗WNV感染。先天性免疫应答对于控制WNV复制,限制病毒诱导的病理以及对WNV感染的保护性体液免疫和细胞介导的免疫至关重要。 RIG-I样受体,Toll样受体和Nod样受体通过诱导有效的抗病毒防御程序来检测WNV并对其作出反应,其特征是产生I型IFN,IL-1β和表达抗病毒效应基因。最近的研究工作集中在揭示先天免疫感应的机制,抑制WNV的抗病毒效应基因以及WNV用来对抗先天免疫细胞防御的对策。在这篇综述中,我们重点介绍了与WNV感染的先天免疫调节有关的主要研究结果。

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