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Surface tension determines tissue shape and growth kinetics

机译:表面张力决定组织的形状和生长动力学

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摘要

The collective self-organization of cells into three-dimensional structures can give rise to emergent physical properties such as fluid behavior. Here, we demonstrate that tissues growing on curved surfaces develop shapes with outer boundaries of constant mean curvature, similar to the energy minimizing forms of liquids wetting a surface. The amount of tissue formed depends on the shape of the substrate, with more tissue being deposited on highly concave surfaces, indicating a mechano-biological feedback mechanism. Inhibiting cell-contractility further revealed that active cellular forces are essential for generating sufficient surface stresses for the liquid-like behavior and growth of the tissue. This suggests that the mechanical signaling between cells and their physical environment, along with the continuous reorganization of cells and matrix is a key principle for the emergence of tissue shape.
机译:细胞向三维结构的集体自组织可产生新兴的物理特性,例如流体行为。在这里,我们证明了在曲面上生长的组织所形成的形状具有恒定的平均曲率外边界,类似于使表面润湿的液体的能量最小化形式。形成的组织数量取决于基底的形状,更多的组织沉积在高度凹入的表面上,这表明了机械生物学反馈机制。抑制细胞收缩性进一步表明,活跃的细胞力对于产生足够的表面应力,对于组织的液体样行为和生长至关重要。这表明细胞及其物理环境之间的机械信号传递,以及细胞和基质的连续重组是组织形状出现的关键原理。

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