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A Prestressed Cable Network Model of the Adherent Cell Cytoskeleton

机译:贴壁细胞骨架的预应力电缆网络模型

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摘要

A prestressed cable network is used to model the deformability of the adherent cell actin cytoskeleton. The overall and microstructural model geometries and cable mechanical properties were assigned values based on observations from living cells and mechanical measurements on isolated actin filaments, respectively. The models were deformed to mimic cell poking (CP), magnetic twisting cytometry (MTC) and magnetic bead microrheometry (MBM) measurements on living adherent cells. The models qualitatively and quantitatively captured the fibroblast cell response to the deformation imposed by CP while exhibiting only some qualitative features of the cell response to MTC and MBM. The model for CP revealed that the tensed peripheral actin filaments provide the key resistance to indentation. The actin filament tension that provides mechanical integrity to the network was estimated at ∼158 pN, and the nonlinear mechanical response during CP originates from filament kinematics. The MTC and MBM simulations revealed that the model is incomplete, however, these simulations show cable tension as a key determinant of the model response.
机译:预应力电缆网络用于模拟贴壁细胞肌动蛋白细胞骨架的可变形性。分别基于对活细胞的观察和对孤立的肌动蛋白丝的机械测量,为整体和微观结构模型的几何形状以及电缆的机械性能指定了值。对模型进行了变形,以模拟活细胞贴壁细胞的细胞戳(CP),磁扭细胞术(MTC)和磁珠微流变(MBM)测量。这些模型定性和定量地捕获了成纤维细胞对CP施加的变形的反应,而仅表现出对MTC和MBM的细胞反应的一些定性特征。 CP的模型显示,张紧的外围肌动蛋白丝提供了关键的抗压痕性。为网络提供机械完整性的肌动蛋白丝张力估计约为158 pN,CP期间的非线性机械响应源自丝线运动学。 MTC和MBM仿真显示该模型是不完整的,但是,这些仿真显示电缆张力是模型响应的关键决定因素。

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