Engineering Department, University of Ferrara, Italy.
Engineering Department, University of Ferrara, Italy.
J Mech Behav Biomed Mater. 2022 Nov;135:105413. doi: 10.1016/j.jmbbm.2022.105413. Epub 2022 Aug 20.
We demonstrate that several key aspects of the contractile activity of a cell interacting with the substrate can be captured by means of a non linear elastic tensegrity mechanical system made of a tensile element in parallel with a buckling-prone component, and exchanging forces with the surroundings through an extracellular matrix-focal adhesion complex. Mechanosensitivity of the focal adhesion plaque is triggered by pre-strain-driven buckling of the system induced either by pre-contraction or pre-polymerization of the constituents. The impact of pre-polymerization on the mechanical force and the implications of using linear and nonlinear elasticity for the focal adhesion plaque are assessed.
我们证明,与底物相互作用的细胞的收缩活动的几个关键方面可以通过一个由拉伸元件与易弯曲元件并联组成的非线性弹性张拉整体力学系统来捕捉,该系统通过细胞外基质-黏着斑复合物与周围环境交换力。黏着斑的机械敏感性是由系统的预应变驱动的弯曲引起的,这种弯曲可以通过组成成分的预收缩或预聚合来触发。评估了预聚合对机械力的影响,以及线性和非线性弹性在黏着斑中的应用。