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Contact inhibition of locomotion and mechanical cross-talk between cell-cell and cell-substrate adhesion determine the pattern of junctional tension in epithelial cell aggregates

机译:细胞间运动和机械串扰之间的接触抑制决定了上皮细胞聚集体的连接张力模式

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We used a computational approach to analyze the biomechanics of epithelial cell aggregates-islands, stripes, or entire monolayers-that combines both vertex and contact-inhibition-of-locomotion models to include cell-cell and cell-substrate adhesion. Examination of the distribution of cell protrusions (adhesion to the substrate) in the model predicted high-order profiles of cell organization that agree with those previously seen experimentally. Cells acquired an asymmetric distribution of basal protrusions, traction forces, and apical aspect ratios that decreased when moving from the edge to the island center. Our in silico analysis also showed that tension on cell-cell junctions and apical stress is not homogeneous across the island. Instead, these parameters are higher at the island center and scale up with island size, which we confirmed experimentally using laser ablation assays and immunofluorescence. Without formally being a three-dimensional model, our approach has the minimal elements necessary to reproduce the distribution of cellular forces and mechanical cross-talk, as well as the distribution of principal stress in cells within epithelial cell aggregates. By making experimentally testable predictions, our approach can aid in mechanical analysis of epithelial tissues, especially when local changes in cell-cell and/or cell-substrate adhesion drive collective cell behavior.
机译:我们使用一种计算方法来分析上皮细胞聚集体(岛,条纹或整个单层)的生物力学,该模型结合了顶点和运动抑制接触模型来包括细胞与细胞和细胞与基底的粘附。在模型中检查细胞突起的分布(粘附至基质)可以预测细胞组织的高阶分布,该分布与先前实验中观察到的一致。当细胞从边缘移动到岛中心时,细胞获得了基底突起,牵引力和顶端长宽比的不对称分布,这些分布减小了。我们的计算机分析还显示,整个岛上的细胞-细胞连接处的张力和顶应力并不均匀。取而代之的是,这些参数在岛中心更高,并且随岛的大小而扩大,我们使用激光消融分析和免疫荧光实验证实了这一点。在没有正式的三维模型的情况下,我们的方法具有重现细胞力和机械串扰分布以及上皮细胞聚集体内细胞主应力分布所必需的最少元素。通过做出可通过实验检验的预测,我们的方法可以帮助上皮组织的机械分析,尤其是当细胞之间的局部变化和/或细胞与基底之间的粘附力驱动集体细胞行为时。

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