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Mathematical model of collective cell migrations based on cell polarity

机译:基于细胞极性的集体细胞迁移数学模型

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Individual cells migrate toward the direction of the cell polarity generated by interior or exterior factors. Under situations without guides such as chemoattractants, they migrate randomly. On the other hand, it has been observed that cell groups lead to systematic collective cell migrations. For example, Dictyostelium discoideum and Madin-Darby canine kidney (epithelial) cells exhibit typical collective cell migration patterns such as uniformly directional migration and rotational migration. In particular, it has been suggested from experimental investigations that rotational migrations are intimately related to morphogenesis of organs and tissues in several species. Thus, it is conjectured that collective cell migrations are controlled by universal mechanisms of cells. In this paper, we review actual experimental data related to collective cell migrations on dishes and show that our self-propelled particle model based on the cell polarity can accurately represent actual migration behaviors. Furthermore, we show that collective cell migration modes observed in our model are robust.
机译:单个细胞朝着内部或外部因素产生的细胞极性的方向迁移。在没有指南的情况下,他们随机迁移。另一方面,已经观察到细胞组导致系统的集体细胞迁移。例如,Dictyostelium Discoideum和Madin-Darby犬肾(上皮)细胞表现出典型的集体细胞迁移模式,例如均匀定向迁移和旋转迁移。特别是,从实验研究中提出了旋转迁移与几种物种中的器官和组织的形态发生密切相关。因此,猜测它通过普遍的细胞机制控制集体单元迁移。在本文中,我们审查了与盘子上的集体单元迁移相关的实际实验数据,并表明我们基于细胞极性的自推进粒子模型可以准确地代表实际的迁移行为。此外,我们表明我们模型中观察到的集体细胞迁移模式是强大的。

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