返老还童
细胞生物学
染色质
骨质疏松症
染色质重塑
骨重建
衰老
干细胞
细胞衰老
骨髓
祖细胞
刺激
骨愈合
生物
癌症研究
DNA损伤
骨细胞
医学
DNA修复
机械转化
骨吸收
机械生物学
细胞内
化学
间充质干细胞
福克斯O1
细胞生长
酒精摄入量
细胞
骨髓干细胞
骨组织
作者
Xiaojing Liu,Yuanxin Ye,Zhonghan Li,Li Liao,Qiang Wei
标识
DOI:10.1038/s41467-026-68387-3
摘要
Bone aging compromises skeletal integrity and increases vulnerability to osteoporosis and other age-related disorders, underscoring the need for new therapeutic strategies. Although pharmacological and genetic approaches have been widely explored, how cellular mechanical remodeling contributes to bone aging remains unclear. Here, we find that senescent bone marrow stem cells show markedly reduced intracellular force and impaired mechanical behavior. Moderate mechanical stimulation in cell culture and in mice restores cellular force, increases chromatin accessibility at the FOXO1 locus, activates its expression, and reverses cellular senescence and bone aging. These mechanical interventions also improve physical performance in aged female mice and show a tendency to reduce systemic inflammation, whereas excessive force induces chromatin overextension and DNA damage, indicating the necessity of precise force control. In this work, we show that optimized mechanical stimulation provides a simple and effective strategy to counteract age-related bone deterioration and systemic inflammation, offering potential for clinical translation.
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