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细胞在外力作用下的非线性运动。

The nonlinear motion of cells subject to external forces.

机构信息

School of Mathematics, University of Bristol, Bristol BS8 1UG, UK.

Lorentz Institute for Theoretical Physics, Leiden University, Leiden 2333 CA, The Netherlands.

出版信息

Soft Matter. 2022 Dec 7;18(47):9008-9016. doi: 10.1039/d2sm00934j.

Abstract

To develop a minimal model for a cell moving in a crowded environment such as in tissue, we investigate the response of a liquid drop of active matter moving on a flat rigid substrate to forces applied at its boundaries. We consider two different self-propulsion mechanisms, active stresses and treadmilling polymerisation, and we investigate how the active drop motion is altered by these surface forces. We find a highly non-linear response to forces that we characterise using drop velocity, drop shape, and the traction between the drop and the substrate. Each self-propulsion mechanism gives rise to two main modes of motion: a long thin drop with zero traction in the bulk, mostly occurring under strong stretching forces, and a parabolic drop with finite traction in the bulk, mostly occurring under strong squeezing forces. In each case there is a sharp transition between parabolic, and long thin drops as a function of the applied forces and indications of drop break-up where large forces stretch the drop.

摘要

为了开发一种适用于细胞在拥挤环境中运动的最小模型,比如在组织中,我们研究了在刚性基底上移动的活性物质液滴对边界力的响应。我们考虑了两种不同的自推进机制,即活性应力和履带聚合,并研究了这些表面力如何改变活性液滴的运动。我们发现力的响应具有高度的非线性,我们使用液滴速度、液滴形状和液滴与基底之间的牵引力来对其进行特征描述。每种自推进机制都会导致两种主要的运动模式:长而细的液滴,内部几乎没有牵引力,主要发生在强拉伸力下;而另一种是内部有有限牵引力的抛物线液滴,主要发生在强挤压力下。在每种情况下,随着施加力的变化,抛物线和细长液滴之间都会发生急剧的转变,并且在力过大时液滴会发生断裂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d368/10141577/f35216a5990e/d2sm00934j-f1.jpg

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