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各向异性界面张力会诱导细胞作为一个集群在 3D 组织中进行集体迁移。

Polarized interfacial tension induces collective migration of cells, as a cluster, in a 3D tissue.

机构信息

WPI Nano Life Science Institute, Kanazawa University, Kanazawa, Japan.

Research Institute for Electronic Science, Hokkaido University, Sapporo, Japan; Global Station for Soft Matter, Global Institution for Collaborative Research and Education, Hokkaido University, Sapporo, Japan.

出版信息

Biophys J. 2022 May 17;121(10):1856-1867. doi: 10.1016/j.bpj.2022.04.018. Epub 2022 May 6.

Abstract

In embryogenesis and cancer invasion, cells collectively migrate as a cluster in 3D tissues. Many studies have elucidated mechanisms of either individual or collective cell migration on 2D substrates; however, it remains unclear how cells collectively migrate as a cluster through 3D tissues. To address this issue, we considered the interfacial tension at cell-cell boundaries expressing cortical actomyosin contractions and cell-cell adhesive interactions. The strength of this tension is polarized; i.e., spatially biased within each cell according to a chemoattractant gradient. Using a 3D vertex model, we performed numerical simulations of multicellular dynamics in 3D space. The simulations revealed that the polarized interfacial tension enables cells to migrate collectively as a cluster through a 3D tissue. In this mechanism, interfacial tension induces unidirectional flow of each cell surface from the front to the rear along the cluster surface. Importantly, this mechanism does not necessarily require convection of cells, i.e., cell rearrangement, within the cluster. Moreover, several migratory modes were induced, depending on the strengths of polarity, adhesion, and noise; i.e., cells migrate either as single cells, as a cluster, or aligned like beads on a string, as occurs in embryogenesis and cancer invasion. These results indicate that the simple expansion and contraction of cell-cell boundaries enables cells to move directionally forward and to produce the variety of collective migratory movements observed in living systems.

摘要

在胚胎发生和癌症侵袭中,细胞集体迁移在 3D 组织中。许多研究已经阐明了单个或集体细胞在 2D 基质上迁移的机制;然而,细胞如何集体迁移通过 3D 组织仍然不清楚。为了解决这个问题,我们考虑了在表达皮质肌动球蛋白收缩和细胞-细胞黏附相互作用的细胞-细胞边界处的界面张力。这种张力具有极性;即在根据趋化梯度,每个细胞内具有空间偏向性。使用 3D 顶点模型,我们在 3D 空间中对细胞动力学进行了数值模拟。模拟表明,极化的界面张力使细胞能够集体迁移通过 3D 组织。在这种机制中,界面张力从细胞前缘沿着细胞簇表面向细胞后缘诱导每个细胞表面的单向流动。重要的是,这种机制不一定需要细胞在细胞簇内的对流,即细胞重排。此外,取决于极性、粘附和噪声的强度,诱导了几种迁移模式;即,细胞要么作为单个细胞迁移,要么作为簇迁移,要么像串珠一样排列,这在胚胎发生和癌症侵袭中发生。这些结果表明,细胞-细胞边界的简单扩展和收缩使细胞能够向前定向移动,并产生在活体系统中观察到的各种集体迁移运动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4392/9199099/429cea45e593/fx1.jpg

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