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A minimal mechanics model for mechanosensing of substrate rigidity gradient in durotaxis

机译:杜拉西斯基底刚性梯度机械沉积的最小机械模型

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Durotaxis refers to the phenomenon in which cells can sense the spatial gradient of the substrate rigidity in the process of cell migration. A conceptual two-part theory consisting of the focal adhesion force generation and mechanotransduction has been proposed previously by Lo et al. to explain the mechanism underlying durotaxis. In the present work, we are concerned with the first part of the theory: how exactly is the larger focal adhesion force generated in the part of the cell adhering to the stiffer region of the substrate? Using a simple elasticity model and by assuming the cell adheres to the substrate continuously underneath the whole cell body, we show that the mechanics principle of static equilibrium alone is sufficient to account for the generation of the larger traction stress on the stiffer region of the substrate. We believe that our model presents a simple mechanistic understanding of mechanosensing of substrate stiffness gradient at the cellular scale, which can be incorporated in more sophisticated mechanobiochemical models to address complex problems in mechanobiology and bioengineering.
机译:杜拉塞斯是指细胞可以在细胞迁移过程中感测基板刚度的空间梯度的现象。通过先前通过Lo等人提出了由局灶性粘附力产生和机械梳理组成的概念性两部分理论。解释杜拉西斯州基础的机制。在目前的工作中,我们关注了该理论的第一部分:在粘附到衬底的冷却区域的细胞的一部分中产生的较大焦点粘附力是多么统称?使用简单的弹性模型和通过假设细胞连续地粘附到整个细胞体下方的基板上,我们表明单独的静态平衡的力学原理足以应考虑在基板的更致命区域上产生较大的牵引力应力。我们认为,我们的模型在细胞秤上呈现了对基板刚度梯度的机械沉积的简单理解理解,其可以在更复杂的机管化学模型中结合,以解决力学和生物工程的复杂问题。

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