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模块化方法理解人类免疫缺陷病毒潜伏的免疫生物学。

Modular Approaches to Understand the Immunobiology of Human Immunodeficiency Virus Latency.

机构信息

Department of Microbiology & Immunology, University of Maryland School of Medicine, Baltimore, Maryland, USA.

出版信息

Viral Immunol. 2021 Jul-Aug;34(6):365-375. doi: 10.1089/vim.2020.0171. Epub 2021 Feb 17.

Abstract

Despite advances in slowing the progression of acquired immunodeficiency syndrome (AIDS), there is no viable cure for human immunodeficiency virus (HIV). The challenge toward a cure is mainly the formation and maintenance of a latent reservoir of cells that harbor the virus in both replication-competent and replication-defective states. This small niche of quiescent cells has been identified to reside primarily in quiescent and memory CD4 T cells, but parameters that could reliably distinguish an infected T cell from an uninfected one, if any, are not clear. In addition, the migratory properties and specific anatomical reservoirs of latent T cells are difficult to measure at a high resolution in humans. A functional cure of HIV would require targeting this population using innovative new clinical strategies. One constraint toward the empirical development of such approaches is the absence of a native small animal model for AIDS. Since HIV does not efficiently infect murine cells, probing molecular-genetic questions involving latently infected T cells homing to deep tissue sites, interacting with stroma and persisting through different treatment regimens, is challenging. The goal of this article is to discuss how examining the dynamics of T cells in mouse models can provide a framework for effectively studying these questions, even without infecting mice with HIV. The inflammatory and cytokine milieu found in early human HIV infections are being increasingly understood as a result of clinical measurements. Mouse studies that recreate this milieu can potentially be used to subsequently map the fate of T cells activated in this context as well as their migratory routes. In essence, such a framework could allow complementary studies in mice to enhance our understanding of aspects of the biology of HIV latency. This can be the basis of a modular approach to small animal HIV modeling, amenable to preclinical curative strategy development.

摘要

尽管在减缓获得性免疫缺陷综合征 (AIDS) 的进展方面取得了进展,但人类免疫缺陷病毒 (HIV) 仍没有可行的治愈方法。治愈的挑战主要在于形成和维持潜伏的细胞库,这些细胞以复制能力和复制缺陷状态携带病毒。这种静止细胞的小生态位已被确定主要存在于静止和记忆 CD4 T 细胞中,但如果存在任何可靠地区分感染 T 细胞和未感染 T 细胞的参数,则尚不清楚。此外,潜伏 T 细胞的迁移特性和特定解剖学储库难以在人体中以高分辨率进行测量。HIV 的功能性治愈需要使用创新的临床策略来靶向该人群。这种方法的实证发展的一个限制是缺乏 AIDS 的天然小型动物模型。由于 HIV 不能有效地感染鼠细胞,因此探测涉及归巢到深部组织部位的潜伏感染 T 细胞、与基质相互作用并通过不同治疗方案持续存在的分子遗传问题具有挑战性。本文的目的是讨论如何检查小鼠模型中的 T 细胞动力学可以为有效研究这些问题提供框架,即使不感染 HIV 的老鼠。由于临床测量,越来越多地了解到早期人类 HIV 感染中发现的炎症和细胞因子环境。重现这种环境的小鼠研究可以潜在地用于随后绘制在此背景下激活的 T 细胞的命运以及它们的迁移途径。从本质上讲,这种框架可以允许在小鼠中进行互补研究,以增强我们对 HIV 潜伏期生物学的某些方面的理解。这可以作为小型动物 HIV 建模的模块化方法的基础,适用于临床前治疗策略的开发。

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