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细胞连接力学超越黏附和张力的界限。

Cell Junction Mechanics beyond the Bounds of Adhesion and Tension.

机构信息

Aix Marseille Université, CNRS, IBDM, Turing Centre for Living Systems, 13288 Marseille, France.

Aix Marseille Université, CNRS, CPT, Turing Centre for Living Systems, 13288 Marseille, France.

出版信息

Dev Cell. 2021 Jan 25;56(2):202-212. doi: 10.1016/j.devcel.2020.12.018. Epub 2021 Jan 15.

Abstract

Cell-cell junctions, in particular adherens junctions, are major determinants of tissue mechanics during morphogenesis and homeostasis. In attempts to link junctional mechanics to tissue mechanics, many have utilized explicitly or implicitly equilibrium approaches based on adhesion energy, surface energy, and contractility to determine the mechanical equilibrium at junctions. However, it is increasingly clear that they have significant limitations, such as that it remains challenging to link the dynamics of the molecular components to the resulting physical properties of the junction, to its remodeling ability, and to its adhesion strength. In this perspective, we discuss recent attempts to consider the aspect of energy dissipation at junctions to draw contact points with soft matter physics where energy loss plays a critical role in adhesion theories. We set the grounds for a theoretical framework of the junction mechanics that bridges the dynamics at the molecular scale to the mechanics at the tissue scale.

摘要

细胞-细胞连接,特别是黏附连接,是形态发生和动态平衡过程中组织力学的主要决定因素。为了将连接力学与组织力学联系起来,许多人已经利用基于粘附能、表面能和收缩性的明确或隐含的平衡方法来确定连接点的力学平衡。然而,越来越明显的是,它们存在着显著的局限性,例如将分子成分的动力学与连接点的物理性质、其重塑能力和粘附强度联系起来仍然具有挑战性。在这篇观点文章中,我们讨论了最近尝试考虑连接点的能量耗散方面的一些努力,以便与软物质物理学建立联系,在软物质物理学中,能量损失在粘附理论中起着关键作用。我们为连接力学的理论框架奠定了基础,该框架将分子尺度上的动力学与组织尺度上的力学联系起来。

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