Stolberg Sarah, McCloskey Kara E
Graduate Program in Quantitative and Systems Biology, University of California, Merced, CA, USA.
Biotechnol Prog. 2009 Jan-Feb;25(1):10-9. doi: 10.1002/btpr.124.
Mechanical forces are important signals in the development and function of the heart and lung, growth of skin and muscle, and maintenance of cartilage and bone. The specific mechanical force "shear stress" has been implicated as playing a critical role in the physiological responses of blood vessels through endothelial cell signaling. More recently, studies have shown that shear stress can induce differentiation of stem cells toward both endothelial and bone-producing cell phenotypes. This review will highlight current data supporting the role of shear stress in stem cell fate and will propose potential mechanisms and signaling cascades for transducing shear stress into a biological signal.
机械力是心脏和肺部发育与功能、皮肤和肌肉生长以及软骨和骨骼维持过程中的重要信号。特定的机械力“剪切应力”已被认为通过内皮细胞信号传导在血管的生理反应中起关键作用。最近,研究表明剪切应力可诱导干细胞向内皮细胞和骨生成细胞表型分化。本综述将重点介绍支持剪切应力在干细胞命运中作用的当前数据,并提出将剪切应力转化为生物信号的潜在机制和信号级联反应。