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Single cell rigidity sensing: A complex relationship between focal adhesion dynamics and large-scale actin cytoskeleton remodeling

机译:单细胞刚度传感:粘着斑动力学与大规模肌动蛋白细胞骨架重塑之间的复杂关系

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摘要

ABSTRACT Many physiological and pathological processes involve tissue cells sensing the rigidity of their environment. In general, tissue cells have been shown to react to the stiffness of their environment by regulating their level of contractility, and in turn applying traction forces on their environment to probe it. This mechanosensitive process can direct early cell adhesion, cell migration and even cell differentiation. These processes require the integration of signals over time and multiple length scales. Multiple strategies have been developed to understand force- and rigidity-sensing mechanisms and much effort has been concentrated on the study of cell adhesion complexes, such as focal adhesions, and cell cytoskeletons. Here, we review the major biophysical methods used for measuring cell-traction forces as well as the mechanosensitive processes that drive cellular responses to matrix rigidity on 2-dimensional substrates.
机译:摘要许多生理和病理学过程都涉及组织细胞,它们感知周围环境的刚性。通常,已经显示出组织细胞通过调节其收缩水平,然后在其周围环境中施加牵引力对其进行探测,从而对周围环境的硬度做出反应。这种机械敏感性过程可以指导早期细胞粘附,细胞迁移,甚至细胞分化。这些过程需要随着时间和多个长度尺度对信号进行集成。已经开发出多种策略来理解力和刚度感测机制,并且已经集中精力研究细胞粘附复合物,例如粘着粘附和细胞骨架。在这里,我们回顾了用于测量细胞牵引力的主要生物物理方法以及驱动细胞对二维基质上的基质刚性反应的机械敏感过程。

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