论文
论文题目: Single-nucleus transcriptomic landscape of primate hippocampal aging
论文题目英文:
作者: Zhang,Hui;Li,Jiaming;Ren,Jie;Sun,Shuhui;Ma,Shuai;Zhang,Weiqi;Yu,Yang;Cai,Yusheng;Yan,Kaowen;Li,Wei;Hu,Baoyang;Chan,Piu;Zhao,Guo-Guang;Belmonte,Juan Carlos Izpisua;Zhou,Qi;Qu,Jing;Wang,Si;Liu,Guang-Hui
论文出处:
年: 2021
卷: 12
期: 9
页: 695-716
联系作者: 刘光慧
发表期刊: Protein & Cell
ISSN:
第一作者所在部门:
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论文连接 http://link-springer-com-s.webvpn.ioz.ac.cn/article/10.1007/s13238-021-00852-9
影响因子: 15.328
摘要: The hippocampus plays a crucial role in learning and memory, and its progressive deterioration with age is functionally linked to a variety of human neurodegenerative diseases. Yet a systematic profiling of the aging effects on various hippocampal cell types in primates is still missing. Here, we reported a variety of new aging-associated phenotypic changes of the primate hippocampus. These include, in particular, increased DNA damage and heterochromatin erosion with time, alongside loss of proteostasis and elevated inflammation. To understand their cellular and molecular causes, we established the first single-nucleus transcriptomic atlas of primate hippocampal aging. Among the 12 identified cell types, neural transiently amplifying progenitor cell (TAPC) and microglia were most affected by aging. In-depth dissection of gene-expression dynamics revealed impaired TAPC division and compromised neuronal function along the neurogenesis trajectory; additionally elevated pro-inflammatory responses in the aged microglia and oligodendrocyte, as well as dysregulated coagulation pathways in the aged endothelial cells may contribute to a hostile microenvironment for neurogenesis. This rich resource for understanding primate hippocampal aging may provide potential diagnostic biomarkers and therapeutic interventions against age-related neurodegenerative diseases.
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