Immune evasion, a critical strategy for rabies virus.

Developments in biologicals Pub Date : 2008-01-01
M Lafon
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Abstract

It is intriguing to note that RABV progression is interrupted neither by destruction of the infected neuron nor by the immune response. Thus, it is likely that RABV has developed a subversive strategy to avoid functional neuron impairment, which compromises the infectious cycle. Rabies virus neuroinvasiveness results from two factors: not only does neurotropic rabies virus avoid inducing neuronal cell death, but also 'protective' T cells that migrate into the infected nervous system are killed by apoptosis or inactivated, as a result of the overexpression of immunosubversive molecules such as FasL, HLA-G or B7-H1 in the infected nervous system. This suggests that the preservation of the neuronal network and the destruction of T cells that invade the nervous system in response to the infection are crucial events for rabies virus neuroinvasion and for transmission of rabies virus to another animal. Implications of these findings for rabies treatment are discussed.

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免疫逃避,狂犬病病毒的关键策略。
有趣的是,RABV的进展既不因受感染神经元的破坏而中断,也不因免疫反应而中断。因此,RABV可能已经发展出一种颠覆性的策略来避免功能性神经元损伤,从而破坏感染周期。狂犬病毒的神经侵袭性源于两个因素:不仅嗜神经性狂犬病毒避免诱导神经元细胞死亡,而且由于感染神经系统中FasL、HLA-G或B7-H1等免疫颠覆分子的过度表达,迁移到受感染神经系统的“保护性”T细胞被凋亡或失活杀死。这表明,保存神经元网络和破坏入侵神经系统的T细胞以应对感染是狂犬病病毒入侵神经和传播到另一动物的关键事件。讨论了这些发现对狂犬病治疗的意义。
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