机械转化
压电1
机械生物学
粘弹性
自愈水凝胶
机械敏感通道
细胞外基质
基质(化学分析)
细胞生物学
间充质干细胞
机械反应
生物物理学
材料科学
微流变学
调节器
拉伤
流变仪
化学
软骨细胞
纳米技术
生物医学工程
离子通道
作者
Mariana Azevedo González Oliva,Giuseppe Ciccone,Gotthold Fläschner,Jiajun Luo,Jonah L. Voigt,Patrizia Romani,Paul G. Genever,Oana Dobre,Sirio Dupont,Massimo Vassalli,Pere Roca‐Cusachs,Manuel Salmerón‐Sánchez
标识
DOI:10.1038/s41467-025-64185-5
摘要
Mechanosensitive ion channels such as Piezo1 have fundamental roles in sensing the mechanical properties of the extracellular matrix. However, whether and how Piezo1 senses time-dependent matrix mechanical properties, that is, viscoelasticity, remains unknown. To address this question, we combine an immortalised mesenchymal stem cell line, in which Piezo1 expression can be silenced, with soft and stiff viscoelastic hydrogels that have independently tuneable elastic and viscous moduli. We demonstrate that Piezo1 is a regulator of the mechanotransduction of viscoelasticity in soft matrices, both experimentally and through simulations incorporating Piezo1 into a modified viscoelastic molecular clutch model. Using RNA sequencing, we also identify the transcriptomic responses of mesenchymal stem cells to matrix viscoelasticity and Piezo1 activity, identifying gene signatures that reflect their mechanobiology in soft and stiff viscoelastic hydrogels.
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