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首页> 外文期刊>Trends in Cardiovascular Medicine >Shear-induced reorganization of endothelial cell cytoskeleton and adhesion complexes.
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Shear-induced reorganization of endothelial cell cytoskeleton and adhesion complexes.

机译:剪切诱导的内皮细胞细胞骨架和粘附复合物的重组。

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摘要

Endothelial cells undergo profound morphologic changes in response to alterations in shear stresses that are imposed on them by blood flow, and these responses have important implications for physiologic and pathophysiologic function of blood vessels. Shear-induced changes in cell morphology represent a unique mode of cell motility: elongation of the cells in the direction of shear stress is achieved by a reorientation and assembly of F-actin stress fibers at the basal cell surface that ultimately protrudes the upstream and downstream limits of the plasma membrane. Shape change is also accommodated by dramatic reorganization of cell-substrate and cell-cell junctional complexes. Both of these structures are sites of mechanotransduction, which raises intriguing questions concerning how shear-induced regulation of endothelial cell physiology is integrated with cell morphologic responses.
机译:内皮细胞响应于血流施加的切应力的变化而发生深刻的形态变化,这些响应对血管的生理和病理生理功能具有重要意义。剪切诱导的细胞形态变化代表了细胞运动的独特模式:通过在基底细胞表面重新定向和组装F-肌动蛋白应力纤维来实现细胞在剪切应力方向上的伸长,最终使上游和下游突起质膜的极限。细胞-基质和细胞-细胞结合复合物的显着重组也可以适应形状变化。这两个结构都是机械转导的位点,这引起了一个有趣的问题,即剪切诱导的内皮细胞生理调节如何与细胞形态反应整合在一起。

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