生物
细胞生物学
小型化
干细胞
钙
肿瘤坏死因子α
机械转化
压电1
内科学
免疫学
机械敏感通道
生物化学
电气工程
离子通道
工程类
医学
受体
作者
Yuhua Xie,Daoming Chen,Kaiju Jiang,Lifang Song,Nannan Qian,Yingxue Du,Yong Yang,Fengchao Wang,Ting Chen
出处
期刊:Cell Stem Cell
[Elsevier]
日期:2021-10-09
卷期号:29 (1): 70-85.e6
被引量:49
标识
DOI:10.1016/j.stem.2021.09.009
摘要
In aging, androgenic alopecia, and genetic hypotrichosis disorders, hair shaft miniaturization is often associated with hair follicle stem cell (HFSC) loss. However, the mechanism causing this stem cell depletion in vivo remains elusive. Here we show that hair shaft loss or a reduction in diameter shrinks the physical niche size, which results in mechanical compression of HFSCs and their apoptotic loss. Mechanistically, cell compression activates the mechanosensitive channel Piezo1, which triggers calcium influx. This confers tumor necrosis factor alpha (TNF-α) sensitivity in a hair-cycle-dependent manner in otherwise resistant HFSCs and induces ectopic apoptosis. Persistent hair shaft miniaturization during aging and genetic hypotrichosis disorders causes long-term HFSC loss by inducing continuous ectopic apoptosis through Piezo1. Our results identify an unconventional role of the inert hair shaft structure as a functional niche component governing HFSC survival and reveal a mechanosensory axis that regulates physical-niche-atrophy-induced stem cell depletion in vivo.
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