细胞毒性T细胞
效应器
CCL5
疾病
淀粉样蛋白(真菌学)
T细胞
病理
生物
癌症研究
细胞生物学
白细胞介素21
医学
封锁
细胞
受体
T细胞受体
免疫学
ZAP70型
白细胞介素2受体
T淋巴细胞
炎症
发病机制
作者
Masaki Ohyagi,Minako Ito,Mana Iizuka-Koga,Setsuko Mise‐Omata,Akihiko Yoshimura
标识
DOI:10.1038/s41467-025-64503-x
摘要
Clonally expanded CD8+ T cells may contribute to Alzheimer's disease (AD) pathology through interactions with brain-resident cells. However, the functional impact of AD-specific T cell receptor (TCR) clonotypes remains unclear. Here, we demonstrate that CD8+ T cells undergo clonal expansion in early-stage AD mouse models, AppNL-G-F and 5xFAD, and that their depletion reduces amyloid plaque accumulation. Expanded TCR-expressing CD8+ T cells preferentially infiltrate the brain, exacerbating plaque deposition. Moreover, brain-infiltrating CD8+ T cells impair microglial transition into disease-associated states, suppressing amyloid clearance via CCL5-CCR5 signaling. Pharmacological blockade of CCL5 attenuates amyloid deposition, whereas CCL5 administration aggravates pathology. Notably, T cell depletion at later disease stages exacerbates amyloid pathology, suggesting a temporal shift in their function. Early-stage CD8+ T cells exhibit cytotoxic and effector profiles, whereas late-stage cells acquire tissue-resident and exhausted phenotypes. This temporal switch-from pathogenic to protective roles-highlights the stage-specific contribution of CD8+ T cells to AD and their potential as therapeutic targets.
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