小胶质细胞
表观遗传学
神经科学
生物
认知功能衰退
老化
衰老
基因
医学
细胞生物学
炎症
免疫学
遗传学
病理
疾病
痴呆
作者
Xiaoyu Li,Yuxin Li,Yuxiao Jin,Yuting Zhang,Jingchuan Wu,Zhen Xu,Yubin Huang,Lin Cai,Shuai Gao,Taohui Liu,Fanzhuo Zeng,Yafei Wang,Wen-Xu Wang,Ti‐Fei Yuan,Zhiming Xu,Yousheng Shu,Feifan Guo,Wei Lu,Ying Mao,Xifan Mei,Yanxia Rao,Bo Peng
出处
期刊:Nature Aging
日期:2023-09-11
卷期号:3 (10): 1288-1311
被引量:41
标识
DOI:10.1038/s43587-023-00479-x
摘要
Abstract As important immune cells, microglia undergo a series of alterations during aging that increase the susceptibility to brain dysfunctions. However, the longitudinal characteristics of microglia remain poorly understood. In this study, we mapped the transcriptional and epigenetic profiles of microglia from 3- to 24-month-old mice. We first discovered unexpected sex differences and identified age-dependent microglia (ADEM) genes during the aging process. We then compared the features of aging and reactivity in female microglia at single-cell resolution and epigenetic level. To dissect functions of aged microglia excluding the influence from other aged brain cells, we established an accelerated microglial turnover model without directly affecting other brain cells. By this model, we achieved aged-like microglia in non-aged brains and confirmed that aged-like microglia per se contribute to cognitive decline. Collectively, our work provides a comprehensive resource for decoding the aging process of microglia, shedding light on how microglia maintain brain functions.
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