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Pathogenesis of acute and chronic central nervous system infection with variants of mouse hepatitis virus, strain JHM

机译:小鼠肝炎病毒JHM变异株在急慢性中枢神经系统感染中的发病机制

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Infection of mice with variants of mouse hepatitis virus, strain JHM (MHV-JHM), provide models of acute and chronic viral infection of the central nervous system (CNS). Through targeted recombination and reverse genetic manipulation, studies of infection with MHV-JHM variants have identified phenotypic differences and examined the effects of these differences on viral pathogenesis and anti-viral host immune responses. Studies employing recombinant viruses with a modified spike (S) glycoprotein of MHV-JHM have identified the S gene as a major determinant of neurovirulence. However, the association of S gene variation and neurovirulence with host ability to generate anti-viral CD8 T cell responses is not completely clear. Partially protective anti-viral immune responses may result in persistent infection and chronic demyelinating disease characterized by myelin removal from axons of the CNS and associated with dense macrophage/microglial infiltration. Demyelinating disease during MHV-JHM infection is immune-mediated, as mice that lack T lymphocytes fail to develop disease despite succumbing to encephalitis with high levels of infectious virus in the CNS. However, the presence of T lymphocytes or anti-viral antibody can induce disease in infected immunodeficient mice. The mechanisms by which these immune effectors induce demyelination share an ability to activate and recruit macrophages and microglia, thus increasing the putative role of these cells in myelin destruction.
机译:用小鼠肝炎病毒变种JHM(MHV-JHM)感染小鼠,可提供中枢神经系统(CNS)急性和慢性病毒感染的模型。通过有针对性的重组和逆向遗传操作,MHV-JHM变体感染的研究已经确定了表型差异,并研究了这些差异对病毒发病机理和抗病毒宿主免疫反应的影响。使用重组病毒带有MHV-JHM的钉状(S)糖蛋白修饰基因的研究已经确定S基因是神经毒力的主要决定因素。但是,S基因变异和神经毒力与宿主产生抗病毒CD8 T细胞应答能力的关联尚不完全清楚。部分保护性抗病毒免疫反应可能导致持续感染和慢性脱髓鞘疾病,其特征是从中枢神经系统轴突去除髓磷脂,并伴有密集的巨噬细胞/小胶质细胞浸润。 MHV-JHM感染期间的脱髓鞘疾病是免疫介导的,因为缺乏T淋巴细胞的小鼠尽管因中枢神经系统中感染高水平传染性病毒的脑炎而无法发展疾病。但是,T淋巴细胞或抗病毒抗体的存在可以在感染的免疫缺陷小鼠中诱发疾病。这些免疫效应物诱导脱髓鞘的机制共有激活和募集巨噬细胞和小胶质细胞的能力,从而增加了这些细胞在髓磷脂破坏中的假定作用。

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