Single-cell RNA sequencing identifies senescent cerebromicrovascular endothelial cells in the aged mouse brain

衰老 转录组 内皮干细胞 生物 电池类型 表型 细胞生物学 细胞 内皮 癌症研究 基因表达 基因 体外 遗传学
作者
Tamás Kiss,Ádám Nyúl‐Tóth,Priya Balasubramanian,Stefano Tarantini,Chetan Ahire,Jordan DelFavero,Andriy Yabluchanskiy,Tamás Csípő,Eszter Farkas,Graham B. Wiley,Lori Garman,Anna Csiszár,Zoltán Ungvári
出处
期刊:GeroScience [Springer International Publishing]
卷期号:42 (2): 429-444 被引量:206
标识
DOI:10.1007/s11357-020-00177-1
摘要

Age-related phenotypic changes of cerebromicrovascular endothelial cells lead to dysregulation of cerebral blood flow and blood-brain barrier disruption, promoting the pathogenesis of vascular cognitive impairment (VCI). In recent years, endothelial cell senescence has emerged as a potential mechanism contributing to microvascular pathologies opening the avenue to the therapeutic exploitation of senolytic drugs in preclinical studies. However, difficulties with the detection of senescent endothelial cells in wild type mouse models of aging hinder the assessment of the efficiency of senolytic treatments. To detect senescent endothelial cells in the aging mouse brain, we analyzed 4233 cells in fractions enriched for cerebromicrovascular endothelial cells and other cells associated with the neurovascular unit obtained from young (3-month-old) and aged (28-month-old) C57BL/6 mice. We define 13 transcriptomic cell types by deep, single-cell RNA sequencing. We match transcriptomic signatures of cellular senescence to endothelial cells identified on the basis of their gene expression profile. Our study demonstrates that with advanced aging, there is an increased ratio of senescent endothelial cells (~ 10%) in the mouse cerebral microcirculation. We propose that our single-cell RNA sequencing-based method can be adapted to study the effect of aging on senescence in various brain cell types as well as to evaluate the efficiency of various senolytic regimens in multiple tissues.
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