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Brain resident memory T cells rapidly expand and initiate neuroinflammatory responses following CNS viral infection

神经炎症 神经病理学 小胶质细胞 抗原 免疫系统 免疫学 生物 细胞毒性T细胞 T细胞 神经科学 CD8型 炎症 医学 病理 体外 疾病 生物化学
作者
Katayoun Ayasoufi,Delaney M. Wolf,Shelby Namen,Fang Jin,Zachariah Peter Tritz,Christian K. Pfaller,Jiaying Zheng,Emma N. Goddery,Cori E. Fain,Lauren Gulbicki,Anna L. Borchers,Rachael Reesman,Lila T. Yokanovich,Mark Andrew Maynes,Michael Bamkole,Roman H. Khadka,Michael Hansen,Long‐Jun Wu,Aaron J. Johnson
出处
期刊:Brain Behavior and Immunity [Elsevier]
卷期号:112: 51-76 被引量:37
标识
DOI:10.1016/j.bbi.2023.05.009
摘要

The contribution of circulating verses tissue resident memory T cells (TRMs) to clinical neuropathology is an enduring question due to a lack of mechanistic insights. The prevailing view is TRMs are protective against pathogens in the brain. However, the extent to which antigen-specific TRMs induce neuropathology upon reactivation is understudied. Using the described phenotype of TRMs, we found that brains of naïve mice harbor populations of CD69+ CD103- T cells. Notably, numbers of CD69+ CD103- TRMs rapidly increase following neurological insults of various origins. This TRM expansion precedes infiltration of virus antigen-specific CD8 T cells and is due to proliferation of T cells within the brain. We next evaluated the capacity of antigen-specific TRMs in the brain to induce significant neuroinflammation post virus clearance, including infiltration of inflammatory myeloid cells, activation of T cells in the brain, microglial activation, and significant blood brain barrier disruption. These neuroinflammatory events were induced by TRMs, as depletion of peripheral T cells or blocking T cell trafficking using FTY720 did not change the neuroinflammatory course. Depletion of all CD8 T cells, however, completely abrogated the neuroinflammatory response. Reactivation of antigen-specific TRMs in the brain also induced profound lymphopenia within the blood compartment. We have therefore determined that antigen-specific TRMs can induce significant neuroinflammation, neuropathology, and peripheral immunosuppression. The use of cognate antigen to reactivate CD8 TRMs enables us to isolate the neuropathologic effects induced by this cell type independently of other branches of immunological memory, differentiating this work from studies employing whole pathogen re-challenge. This study also demonstrates the capacity for CD8 TRMs to contribute to pathology associated with neurodegenerative disorders and long-term complications associated with viral infections. Understanding functions of brain TRMs is crucial in investigating their role in neurodegenerative disorders including MS, CNS cancers, and long-term complications associated with viral infections including COVID-19.
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