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细胞外肌动蛋白丝缆在上皮细胞愈合过程中的作用。

Role of the supracellular actomyosin cable during epithelial wound healing.

机构信息

Department of Applied Physics and Center for Theoretical Biological Physics, Rice University, Houston TX, 77251-1892, USA.

出版信息

Soft Matter. 2018 Jun 13;14(23):4866-4873. doi: 10.1039/c7sm02521a.

Abstract

The closure of wounds in epithelia is center to many physiological processes in both development and repair of multicellular organisms. Depending on the biochemical and mechanical environment as well as cell type, this collective cellular movement often involves coordinated cell crawling and the purse-string contraction of a supracellular actomyosin ring around the wound. However, it remains uncertain how these two mechanisms cooperatively contribute to the wound healing, and especially the role of the ring is not clear. To decipher this complex process, we develop a particle-based model that includes purse-string contraction, cell crawling and other properties incorporated with monolayers of Madin-Darby canine kidney (MDCK) cells. Our model captures the traction force patterns under several different conditions in experiments. In addition to traction force pointing away from the wound on the leading edge, we observed patterns of traction force pointing towards the wound. We show this inward pointing force pattern is induced by the purse-string contraction. Our model also explains the effects of the purse-string ring and which parameters affect the relative efficiency of these two mechanisms.

摘要

上皮细胞的伤口闭合是多细胞生物发育和修复过程中的许多生理过程的核心。取决于生化和力学环境以及细胞类型,这种集体细胞运动通常涉及协调的细胞爬行和围绕伤口的超细胞肌动球蛋白环的束带收缩。然而,目前尚不清楚这两种机制如何协同促进伤口愈合,特别是环的作用尚不清楚。为了解开这个复杂的过程,我们开发了一个基于粒子的模型,该模型包括束带收缩、细胞爬行和其他特性,这些特性与 Madin-Darby 犬肾 (MDCK) 细胞单层结合在一起。我们的模型可以模拟实验中几种不同条件下的牵引力模式。除了在前沿处指向伤口的牵引力模式外,我们还观察到指向伤口的牵引力模式。我们表明,这种向内指向力模式是由束带收缩引起的。我们的模型还解释了束带环的作用以及哪些参数会影响这两种机制的相对效率。

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