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张力重塑调节上皮组织中的拓扑转变。

Tension Remodeling Regulates Topological Transitions in Epithelial Tissues.

作者信息

Pérez-Verdugo Fernanda, Banerjee Shiladitya

机构信息

Department of Physics, Carnegie Mellon University, Pittsburgh, Pennsylvania 15213, USA.

出版信息

PRX Life. 2023 Oct-Dec;1(2). doi: 10.1103/prxlife.1.023006. Epub 2023 Nov 27.

Abstract

Cell neighbor exchanges play a critical role in regulating tissue fluidity during epithelial morphogenesis and repair. , these neighbor exchanges are often hindered by the formation of transiently stable fourfold vertices, which can develop into complex multicellular rosettes where five or more cell junctions meet. Despite their importance, the mechanical origins of multicellular rosettes have remained elusive, and current cellular models lack the ability to explain their formation and maintenance. Here we present a dynamic vertex model of epithelial tissues with strain-dependent tension remodeling and mechanical memory dissipation. We show that an increase in cell junction tension upon contraction and reduction in tension upon extension can stabilize higher-order vertices, temporarily stalling cell rearrangements. On the other hand, inducing mechanical memory dissipation via relaxation of junction strain and stress promotes the resolution of higher-order vertices, facilitating cell neighbor exchanges. We demonstrate that by tuning the rates of tension remodeling and mechanical memory dissipation, we can control topological transitions and tissue material properties, recapitulating complex cellular topologies seen in developing organisms.

摘要

细胞邻居交换在调节上皮形态发生和修复过程中的组织流动性方面起着关键作用。然而,这些邻居交换常常受到瞬时稳定的四重顶点形成的阻碍,四重顶点可发展成五个或更多细胞连接相遇的复杂多细胞玫瑰花结。尽管它们很重要,但多细胞玫瑰花结的力学起源仍然难以捉摸,目前的细胞模型缺乏解释其形成和维持的能力。在这里,我们提出了一种具有应变依赖性张力重塑和机械记忆耗散的上皮组织动态顶点模型。我们表明,收缩时细胞连接张力增加,伸展时张力降低,可稳定高阶顶点,暂时阻止细胞重排。另一方面,通过连接应变和应力的松弛诱导机械记忆耗散,可促进高阶顶点的分解,促进细胞邻居交换。我们证明,通过调整张力重塑和机械记忆耗散的速率,我们可以控制拓扑转变和组织材料特性,重现发育生物体中所见的复杂细胞拓扑结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/51a4/11500814/eb9d40f249ee/nihms-1984388-f0001.jpg

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