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Numerical investigation of the role of intercellular interactions on collective epithelial cell migration

机译:细胞间相互作用对集体上皮细胞迁移作用的数值研究

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During collective cell migration, the intercellular forces will significantly affect the collective migratory behaviors. However, the measurement of mechanical stresses exerted at cell-cell junctions is very challenging. A recent experimental observation indicated that the intercellular adhesion sites within a migrating monolayer are subjected to both normal stress exerted perpendicular to cell-cell junction surface and shear stress exerted tangent to cell-cell junction surface. In this study, an interfacial interaction model was proposed to model the intercellular interactions for the first time. The intercellular interaction model-based study of collective epithelial migration revealed that the direction of cell migration velocity has better alignment with the orientation of local principal stress at higher maximum shear stress locations in an epithelial monolayer sheet. Parametric study of the effects of adhesion strength indicated that normal adhesion strength at the cell-cell junction surface has dominated effect on local alignment between the direction of cell velocity vector and the principal stress orientation, while the shear adhesion strength has little effect, which provides compelling evidence to help explain the force transmission via cell-cell junctions between adjacent cells in collective cell motion and provides new insights into "adhesive belt" effects at cell-cell junction.
机译:在集体细胞迁移期间,细胞间势力会显着影响集体迁移行为。然而,在细胞 - 细胞连接处施加的机械应力的测量非常具有挑战性。最近的实验观察结果表明,迁移单层内的细胞间粘附位点经受垂直于细胞 - 细胞结表面施加的正常应力,并且对细胞 - 细胞结表面切换的剪切应力。在该研究中,提出了界面相互作用模型首次模拟细胞间相互作用。基于细胞的集体上皮迁移的基于细胞间的基于模型的研究表明,细胞迁移速度的方向与上皮单层板中较高的最大剪切应力位置处的局部主应力的取向更好地对准。参数研究粘合强度的效果表明细胞 - 细胞结表面的正常粘附强度对细胞速度向量方向与主应力取向之间的局部对准具有主导作用,而剪切粘合强度几乎没有效果,这提供了几乎没有效果引人注目的证据,帮助通过集体细胞运动中相邻电池之间的细胞单元结来解释力传输,并在细胞 - 细胞结的效果中提供新的洞察。

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