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粘连作为流变体乳液中液滴极化的触发因素。

Adhesion as a trigger of droplet polarization in flowing emulsions.

机构信息

Sorbonne Université, CNRS, Institut de Biologie Paris-Seine (IBPS), Laboratoire Jean Perrin (LJP), F-75005, Paris, France.

出版信息

Soft Matter. 2021 Apr 14;17(14):3820-3828. doi: 10.1039/d1sm00097g. Epub 2021 Mar 16.

Abstract

Tissues are subjected to large external forces and undergo global deformations during morphogenesis. We use synthetic analogues of tissues to study the impact of cell-cell adhesion on the response of cohesive cellular assemblies under such stresses. In particular, we use biomimetic emulsions in which the droplets are functionalized in order to exhibit specific droplet-droplet adhesion. We flow these emulsions in microfluidic constrictions and study their response to this forced deformation via confocal microscopy. We find that the distributions of avalanche sizes are conserved between repulsive and adhesive droplets. However, adhesion locally impairs the rupture of droplet-droplet contacts, which in turn pulls on the rearranging droplets. As a result, adhesive droplets are a lot more deformed along the axis of elongation in the constriction. This finding could shed light on the origin of polarization processes during morphogenesis.

摘要

组织在形态发生过程中会受到外部的巨大作用力,并经历全局变形。我们使用组织的合成类似物来研究细胞-细胞黏附对在这些压力下有凝聚力的细胞组装体的响应的影响。特别是,我们使用经过功能化处理的仿生乳液,使其液滴具有特定的液滴-液滴黏附性。我们将这些乳液在微流控狭窄通道中流动,并通过共聚焦显微镜研究它们对这种强制变形的响应。我们发现,排斥和黏附液滴之间的雪崩大小分布是守恒的。然而,黏附作用会局部破坏液滴-液滴之间的接触,这反过来又会对正在重新排列的液滴施加拉力。因此,黏附液滴在收缩处的伸长轴方向上会发生更多的变形。这一发现可能揭示了形态发生过程中极化过程的起源。

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