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Collective migration of an epithelial monolayer in response to a model wound

机译:上皮单层对模型伤口的集体迁移

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Using an original microfabrication-based technique, we experimentally study situations in which a virgin surface is presented to a confluent epithelium with no damage made to the cells. Although inspired by wound-healing experiments, the situation is markedly different from classical scratch wounding because it focuses on the influence of the free surface and uncouples it from the other possible contributions such as cell damage and/or per-meabilization. Dealing with Madin-Darby canine kidney cells on various surfaces, we found that a sudden release of the available surface is sufficient to trigger collective motility. This migration is independent of the proliferation of the cells that mainly takes place on the fraction of the surface initially covered. We find that this motility is characterized by a duality between collective and individual behaviors. On the one hand, the velocity fields within the monolayer are very long range and involve many cells in a coordinated way. On the other hand, we have identified very active "leader cells" that precede a small cohort and destabilize the border by a fingering instability. The sides of the fingers reveal a pluricellular actin "belt" that may be at the origin of a mechanical signaling between the leader and the followers. Experiments performed with autocrine cells constitutively expressing hepato-cyte growth factor (HGF) or in the presence of exogenous HGF show a higher average velocity of the border and no leader.
机译:使用原始的基于微细加工的技术,我们通过实验研究了原始表面呈现在汇合的上皮细胞上而对细胞没有损害的情况。尽管受到伤口愈合实验的启发,但这种情况与传统的划伤明显不同,因为这种情况着眼于自由表面的影响,并将其与其他可能的影响(例如细胞损伤和/或过均化)分离。在处理各种表面的Madin-Darby犬肾细胞时,我们发现可用表面的突然释放足以触发集体运动。这种迁移与细胞增殖无关,后者主要发生在最初覆盖的表面部分。我们发现这种动力的特征是集体和个人行为之间的双重性。一方面,单层内的速度场范围很长,并且以协调的方式涉及许多单元。另一方面,我们已经确定了一个非常活跃的“前导细胞”,该“前导细胞”位于一小群人之前,并且由于手指不稳定而使边界不稳定。手指的侧面露出了多细胞肌动蛋白“带”,它可能是引导者与跟随者之间机械信号传递的起点。用组成型表达肝细胞生长因子(HGF)或存在外源性HGF的自分泌细胞进行的实验显示,边界的平均速度更高,并且没有前导。

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