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成像树突状细胞功能。

Imaging dendritic cell functions.

机构信息

Institute of Immunology, Hannover Medical School, Hannover, Germany.

Cluster of Excellence RESIST (EXC 2155) Hannover Medical School, Hannover, Germany.

出版信息

Immunol Rev. 2022 Mar;306(1):137-163. doi: 10.1111/imr.13050. Epub 2021 Dec 3.

DOI:10.1111/imr.13050
PMID:34859450
Abstract

Dendritic cells (DCs) are crucial for the appropriate initiation of adaptive immune responses. During inflammation, DCs capture antigens, mature, and migrate to lymphoid tissues to present foreign material to naïve T cells. These cells get activated and differentiate either into pathogen-specific cytotoxic CD8 T cells that destroy infected cells or into CD4 T helper cells that, among other effector functions, orchestrate antibody production by B cells. DC-mediated antigen presentation is equally important in non-inflammatory conditions. Here, DCs mediate induction of tolerance by presenting self-antigens or harmless environmental antigens and induce differentiation of regulatory T cells or inactivation of self-reactive immune cells. Detailed insights into the biology of DCs are, therefore, crucial for the development of novel vaccines as well as the prevention of autoimmune diseases. As in many other life science areas, our understanding of DC biology would be extremely restricted without bioimaging, a compilation of methods that visualize biological processes. Spatiotemporal tracking of DCs relies on various imaging tools, which not only enable insights into their positioning and migration within tissues or entire organs but also allow visualization of subcellular and molecular processes. This review aims to provide an overview of the imaging toolbox and to provide examples of diverse imaging techniques used to obtain fundamental insights into DC biology.

摘要

树突状细胞 (DCs) 对于适当启动适应性免疫反应至关重要。在炎症过程中,DCs 摄取抗原、成熟并迁移到淋巴组织,将外来物质呈递给幼稚 T 细胞。这些细胞被激活并分化为特异性细胞毒性 CD8 T 细胞,这些细胞破坏受感染的细胞,或分化为 CD4 T 辅助细胞,除其他效应功能外,还协调 B 细胞产生抗体。在非炎症条件下,DC 介导的抗原呈递同样重要。在这里,DC 通过呈递自身抗原或无害的环境抗原来介导耐受的诱导,并诱导调节性 T 细胞的分化或自身反应性免疫细胞的失活。因此,深入了解 DC 生物学对于开发新型疫苗以及预防自身免疫性疾病至关重要。与许多其他生命科学领域一样,如果没有生物成像,即可视化生物过程的方法的综合,我们对 DC 生物学的理解将受到极大限制。DC 的时空追踪依赖于各种成像工具,这些工具不仅使我们能够洞察它们在组织或整个器官内的定位和迁移,还能够可视化亚细胞和分子过程。本文旨在概述成像工具箱,并提供使用各种成像技术获得有关 DC 生物学基本见解的示例。

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