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On fundamental cellular processes for emergence of collective epithelial movement

机译:关于集体上皮运动出现的基本细胞过程

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In all animals, collective cell movement is an essential process in many events, including wound healing and embryonic development. However, our understanding of what characterizes the emergence of multicellular collective behavior is still far from complete. In this article we showed the fundamental cellular processes that drive collective cell movement by means of integrated approaches, including precise quantification measurements and mathematical modeling of measured data. First, we observed the dependence of the collective behaviors of cultured human skin cells on Ca2+ concentrations. When the culturing area confined by a PDMS sheet was suddenly expanded by removing the sheet, the group of cells moved to the expanded area with higher collectivity at higher Ca2+ concentrations. Next, we quantitatively measured cellular responses to the Ca2+ treatments, such as cell growth, cell division, and the strength of intercellular adhesion. Using a femtosecond-laser-based assay, an original method for estimating intercellular adhesion, we found that the strength of intercellular adhesion has an approximately 13-fold range in our treatments. Incorporating the quantitative data into a mathematical model, we then confirmed that the model well reproduced the multicellular behaviors we observed, demonstrating that the strength of intercellular adhesion sufficiently determines the generation of collective cell movement. Finally, we performed extensive numerical experiments, and the results suggested that the emergence of collective cell movement is derived by an optimal balance between the strength of intercellular adhesion and the intensity of cell migration.
机译:在所有动物中,集体细胞运动在许多情况下都是必不可少的过程,包括伤口愈合和胚胎发育。但是,我们对表征多细胞集体行为的特征的理解还远远不够。在本文中,我们展示了通过集成方法(包括精确的量化测量和测量数据的数学建模)驱动集体细胞运动的基本细胞过程。首先,我们观察到培养的人类皮肤细胞的集体行为对Ca2 +浓度的依赖性。当通过移开PDMS片材而使由PDMS片材限制的培养区域突然扩大时,细胞群以较高的Ca 2+浓度以较高的集合性移动至扩大的区域。接下来,我们定量测量了细胞对Ca2 +处理的反应,例如细胞生长,细胞分裂和细胞间粘附强度。使用基于飞秒激光的分析方法(一种估计细胞间粘附力的原始方法),我们发现细胞间粘附力的强度在我们的治疗方法中约为13倍。将定量数据整合到数学模型中,然后我们确认该模型很好地再现了我们观察到的多细胞行为,表明细胞间粘附的强度足以决定集体细胞运动的产生。最后,我们进行了广泛的数值实验,结果表明,集体细胞运动的出现是通过细胞间粘附强度和细胞迁移强度之间的最佳平衡而得出的。

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