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Rapid Evolution of HIV-1 to Functional CD8~+ T Cell Responses in Humanized BLT Mice

机译:HIV-1的快速演变为人源化BLT小鼠功能的CD8〜+ T细胞应答

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The development of mouse/human chimeras through the engraftment of human immune cells and tissues into immunodeficient mice, including the recently described humanized BLT (bone marrow, liver, thymus) mouse model, holds great promise to facilitate the in vivo study of human immune responses. However, little data exist regarding the extent to which cellular immune responses in humanized mice accurately reflect those seen in humans. We infected humanized BLT mice with HIV-1 as a model pathogen and characterized HIV-1-specific immune responses and viral evolution during the acute phase of infection. HIV-1-specific CD8~+ T cell responses in these mice were found to closely resemble those in humans in terms of their specificity, kinetics, and im-munodominance. Viral sequence evolution also revealed rapid and highly reproducible escape from these responses, mirroring the adaptations to host immune pressures observed during natural HIV-1 infection. Moreover, mice expressing the protective HLA-B*57 allele exhibited enhanced control of viral replication and restricted the same CD8~+ T cell responses to conserved regions of HIV-1 Gag that are critical to its control of HIV-1 in humans. These data reveal that the humanized BLT mouse model appears to accurately recapitulate human pathogen-specific cellular immunity and the fundamental immunological mechanisms required to control a model human pathogen, aspects critical to the use of a small-animal model for human pathogens.
机译:通过将人免疫细胞和组织植入到免疫缺陷小鼠中,包括最近描述的人源化的BLT(骨髓,肝脏,胸腺)小鼠模型的发展,促进了人类免疫反应的体内研究。然而,存在对人源化小鼠中细胞免疫应答的程度的几乎没有数据,准确反映在人类中看到的小鼠。我们用HIV-1感染人源化的BLT小鼠作为模型病原体,并且在感染的急性期间表征了HIV-1特异性免疫应答和病毒演化。在这些小鼠中发现HIV-1特异性CD8〜+ T细胞应答在其特异性,动力学和IM-MUNODOMANCE方面非常类似于人类。病毒序列演化还揭示了从这些反应的快速且高度可重复的逃脱,镜像在自然HIV-1感染期间观察到的宿主免疫压力的适应性。此外,表达保护性HLA-B * 57等位基因的小鼠表现出对病毒复制的增强控制,并限制了对HIV-1 GAG的保守区域的相同CD8〜+ T细胞应答,这对其对人类的HIV-1的控制至关重要。这些数据表明,人源化的BLT小鼠模型似乎准确地重新延长了人病原体特异性细胞免疫力和控制模型人病原体所需的基本免疫机制,对使用人类病原体的小动物模型来说至关重要。

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