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Coaction of intercellular adhesion and cortical tension specifies tissue surface tension

机译:细胞间粘附力与皮质张力的共同作用决定了组织表面张力

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摘要

In the course of animal morphogenesis, large-scale cell movements occur, which involve the rearrangement, mutual spreading, and compartmentalization of cell populations in specific configurations. Morphogenetic cell rearrangements such as cell sorting and mutual tissue spreading have been compared with the behaviors of immiscible liquids, which they closely resemble. Based on this similarity, it has been proposed that tissues behave as liquids and possess a characteristic surface tension, which arises as a collective, macroscopic property of groups of mobile, cohering cells. But how are tissue surface tensions generated? Different theories have been proposed to explain how mesoscopic cell properties such as cell–cell adhesion and contractility of cell interfaces may underlie tissue surface tensions. Although recent work suggests that both may be contributors, an explicit model for the dependence of tissue surface tension on these mesoscopic parameters has been missing. Here we show explicitly that the ratio of adhesion to cortical tension determines tissue surface tension. Our minimal model successfully explains the available experimental data and makes predictions, based on the feedback between mechanical energy and geometry, about the shapes of aggregate surface cells, which we verify experimentally. This model indicates that there is a crossover from adhesion dominated to cortical-tension dominated behavior as a function of the ratio between these two quantities.
机译:在动物形态发生的过程中,发生大规模的细胞运动,涉及特定配置下细胞群体的重排,相互扩散和分隔。形态发生的细胞重排(例如细胞分选和组织相互扩散)已经与不相溶的液体的行为进行了比较,它们非常相似。基于这种相似性,提出了组织表现为液体并具有特征性的表面张力,该表面张力是作为一组移动的,紧密相连的细胞的集体宏观性质而产生的。但是如何产生组织表面张力?已经提出了不同的理论来解释介观的细胞特性,例如细胞间的粘附和细胞界面的收缩性可能是组织表面张力的基础。尽管最近的工作表明两者都可能是造成这种情况的原因,但缺少组织表面张力对这些介观参数的依赖性的明确模型。在这里,我们明确表明,粘附力与皮质张力的比值决定了组织表面张力。我们的最小模型成功地解释了可用的实验数据,并基于机械能和几何之间的反馈对聚集的表面细胞的形状进行了预测,我们通过实验进行了验证。该模型表明,作为这两个量之比的函数,有一种从粘附力为主的行为转变为以皮质张力为主的行为。

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