机械敏感通道
生物
机械转化
细胞生物学
细胞生理学
内皮干细胞
血管生成
剪应力
细胞骨架
血管
内皮
细胞
受体
应力纤维
病理
血管壁
细胞粘附
细胞力学
病态的
机械生物学
解剖
神经科学
粘附
血管组织
人体生理学
剪切(地质)
血管平滑肌
作者
Eulashini Chuntharpursat‐Bon,Jovana Serbanovic‐Canic,Mabruka Alfaidi,E A V Jones,C Cheng,Stephen J. White,Tzung K. Hsiai,Hanjoong Jo,Nicolas Baeyens,Yun Fang,Eno E. Ebong,John S. Reader,Ellie Tzima,Suowen Xu,Paul C. Evans
摘要
Sensing of mechanical force is crucial in regulating vascular homeostasis, physiology and disease. Endothelial cells line the lumens of blood vessels and are constantly exposed to flowing blood. This generates mechanical shear stress, which is instrumental in modulating endothelial cell behavior. Mechanosensitive proteins, including ion channels, G protein-coupled receptors (GPCR) and other cell surface receptors, adhesion molecules, integrins, primary cilia, cytoskeletal elements and the glycocalyx, transduce mechanical stimuli into biochemical signals that are essential for maintaining vascular integrity, responding to inflammatory stimuli and facilitating angiogenesis and arteriogenesis. Disruption in shear stress sensing can lead to pathological conditions, such as atherosclerosis or vascular anomalies. This Review article provides an integrated overview of the current knowledge on endothelial shear stress sensing and highlights key unanswered questions that will shape future research in vascular biology and disease.
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