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The effect of remodelling and contractility of the actin cytoskeleton on the shear resistance of single cells: a computational and experimental investigation

机译:肌动蛋白细胞骨架的重塑和收缩对单细胞抗剪切力的影响:计算和实验研究

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The biomechanisms that govern the response of chondrocytes to mechanical stimuli are poorly understood. In this study, a series of in vitro tests are performed, in which single chondrocytes are subjected to shear deformation by a horizontally moving probe. Dramatically different probe force-indentation curves are obtained for untreated cells and for cells in which the actin cytoskeleton has been disrupted. Untreated cells exhibit a rapid increase in force upon probe contact followed by yielding behaviour. Cells in which the contractile actin cytoskeleton was removed exhibit a linear force-indentation response. In order to investigate the mechanisms underlying this behaviour, a three-dimensional active modelling framework incorporating stress fibre (SF) remodelling and contractility is used to simulate the in vitro tests. Simulations reveal that the characteristic force-indentation curve observed for untreated chondrocytes occurs as a result of two factors: (i) yielding of SFs due to stretching of the cytoplasm near the probe and (ii) dissociation of SFs due to reduced cytoplasm tension at the front of the cell. In contrast, a passive hyperelastic model predicts a linear force-indentation curve similar to that observed for cells in which the actin cytoskeleton has been disrupted. This combined modelling-experimental study offers a novel insight into the role of the active contractility and remodelling of the actin cytoskeleton in the response of chondrocytes to mechanical loading.
机译:控制软骨细胞对机械刺激的反应的生物机制了解甚少。在这项研究中,进行了一系列体外测试,其中单个软骨细胞通过水平移动的探针进行剪切变形。对于未处理的细胞和肌动蛋白细胞骨架已被破坏的细胞,获得了截然不同的探针力-压痕曲线。未经处理的细胞在接触探针后会迅速增加作用力,然后产生行为。去除了收缩性肌动蛋白细胞骨架的细胞表现出线性力-压痕响应。为了研究此行为的潜在机制,将包含应力纤维(SF)重塑和收缩力的三维主动建模框架用于模拟体外测试。模拟显示,未处理的软骨细胞观察到的特征力-压痕曲线是由两个因素引起的:(i)由于探针附近细胞质的拉伸而产生的sf,以及(ii)由于在细胞表面处的细胞质张力降低而导致的sf的解离。单元的前面。相反,被动超弹性模型预测的线性力-压痕曲线类似于肌动蛋白细胞骨架被破坏的细胞所观察到的。这项组合的模型实验研究为肌动蛋白细胞骨架的主动收缩和重塑在软骨细胞对机械负荷的反应中的作用提供了新的见解。

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