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The simulation of stress fibre and focal adhesion development in cells on patterned substrates

机译:图案化基材上单元中应力纤维和粘着斑发展的模拟

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摘要

The remodelling of the cytoskeleton and focal adhesion (FA) distributions for cells on substrates with micro-patterned ligand patches is investigated using a bio-chemo-mechanical model. We investigate the effect of ligand pattern shape on the cytoskeletal arrangements and FA distributions for cells having approximately the same area. The cytoskeleton model accounts for the dynamic rearrangement of the actin/myosin stress fibres. It entails the highly nonlinear interactions between signalling, the kinetics of tension-dependent stress-fibre formation/dissolution and stress-dependent contractility. This model is coupled with another model that governs FA formation and accounts for the mechano-sensitivity of the adhesions from thermodynamic considerations. This coupled modelling scheme is shown to capture a variety of key experimental observations including: (i) the formation of high concentrations of stress fibres and FAs at the periphery of circular and triangular, convex-shaped ligand patterns; (ii) the development of high FA concentrations along the edges of the V-, T-, Y- and U-shaped concave ligand patterns; and (iii) the formation of highly aligned stress fibres along the non-adhered edges of cells on the concave ligand patterns. When appropriately calibrated, the model also accurately predicts the radii of curvature of the non-adhered edges of cells on the concave-shaped ligand patterns.
机译:使用生物化学-机械模型研究了具有微图案配体补丁的基质上细胞的细胞骨架和粘着斑(FA)分布的重塑。我们调查配体模式形状对具有大致相同面积的细胞的细胞骨架排列和FA分布的影响。细胞骨架模型说明了肌动蛋白/肌球蛋白应力纤维的动态重排。它需要在信号传递,依赖于张力的应力纤维形成/溶解动力学和依赖于应力的收缩力之间建立高度非线性的相互作用。该模型与另一个模型结合在一起,该模型控制FA的形成并从热力学角度考虑粘附的机械敏感性。该耦合建模方案显示出捕获了各种关键的实验观察结果,包括:(i)在圆形和三角形,凸形配体图案的外围形成高浓度的应力纤维和FA。 (ii)沿V型,T型,Y型和U型凹配体图案的边缘出现高FA浓度; (iii)沿着凹形配体图案上的细胞的非粘附边缘形成高度对准的应力纤维。如果进行了适当的校准,该模型还可以准确地预测凹形配体图案上细胞的非粘附边缘的曲率半径。

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