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抑制性单核细胞样树突状细胞(MCs)对呼吸道CD8 + T细胞免疫的调节

Regulation of respiratory CD8+ T-cell immunity by suppressive monocyte-like dendritic cells (MCs).

作者信息

Reagin Katie L, Oliva Kimberly E, Hansen Matthew R, Slade Chris D, Watford Wendy T, Klonowski Kimberly D

机构信息

Department of Cellular Biology, University of Georgia, Athens, GA, United States.

出版信息

J Immunol. 2025 May 1;214(5):977-994. doi: 10.1093/jimmun/vkae059.

Abstract

Active immune suppression can mediate the balance between protective cellular immunity and harmful immunopathology. This suppression can occur locally, at an infection site, or in regional draining lymph nodes (dLNs). Immune regulation is of particular importance in sites such as the lung where aberrant immunopathology can result in loss of tissue function and respiratory failure. We have recently identified a novel population of CD11b+CD103+CCR2+ monocyte-like dendritic cells (MCs) which directly suppress CD8+ T-cell proliferation in vitro. Respiratory infection of mice with RNA viruses recruits these MCs either exclusively to the dLN (after vesicular stomatitis virus infection) or both the dLN and site of viral replication (after influenza infection). Here we show that depletion of MCs from the dLN of mice using CCR2-DTR bone marrow chimeras results in enhanced respiratory CD8+ T-cell responses and lung tissue-resident memory cell (TRM) formation which correlated with enhanced antiviral responses upon heterologous VSV challenge. Conversely, depletion of MCs from both the dLN and respiratory tract following influenza infection results in enhanced respiratory CD8+ T-cell responses coupled with fatal immunopathology. Together, these data suggest that suppressive MCs govern key aspects of respiratory CD8+ T-cell immunity, thereby balancing immunity and adverse pathology in the context of viral infection.

摘要

主动免疫抑制可介导保护性细胞免疫与有害免疫病理之间的平衡。这种抑制可在局部发生,即在感染部位或区域引流淋巴结(dLN)中发生。免疫调节在诸如肺部等部位尤为重要,在这些部位异常的免疫病理可导致组织功能丧失和呼吸衰竭。我们最近鉴定出一种新型的CD11b + CD103 + CCR2 +单核细胞样树突状细胞(MC)群体,其在体外直接抑制CD8 + T细胞增殖。用RNA病毒对小鼠进行呼吸道感染后,这些MC要么专门被募集到dLN(水疱性口炎病毒感染后),要么被募集到dLN和病毒复制部位(流感感染后)。在这里,我们表明,使用CCR2 - DTR骨髓嵌合体从小鼠的dLN中耗尽MC会导致呼吸道CD8 + T细胞反应增强以及肺组织驻留记忆细胞(TRM)形成,这与异源VSV攻击后抗病毒反应增强相关。相反,流感感染后从dLN和呼吸道中耗尽MC会导致呼吸道CD8 + T细胞反应增强并伴有致命的免疫病理。总之,这些数据表明,抑制性MC控制着呼吸道CD8 + T细胞免疫的关键方面,从而在病毒感染的背景下平衡免疫和不良病理。

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