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三维多细胞系统中的集体曲率感知与流动性

Collective curvature sensing and fluidity in three-dimensional multicellular systems.

作者信息

Tang Wenhui, Das Amit, Pegoraro Adrian F, Han Yu Long, Huang Jessie, Roberts David A, Yang Haiqian, Fredberg Jeffrey J, Kotton Darrell N, Bi Dapeng, Guo Ming

机构信息

Department of Mechanical Engineering, Massachusetts Institute of Technology, Cambridge, MA, 02139, USA.

Department of Physics, Northeastern University, MA 02115, USA.

出版信息

Nat Phys. 2022 Nov;18(11):1371-1378. doi: 10.1038/s41567-022-01747-0. Epub 2022 Oct 3.

Abstract

Collective cell migration is an essential process throughout the lives of multicellular organisms, for example in embryonic development, wound healing, and tumor metastasis. Substrates or interfaces associated with these processes are typically curved, with radii of curvature comparable to many cell lengths. Using both artificial geometries and lung alveolospheres derived from human induced pluripotent stem cells, here we show that cells sense multicellular-scale curvature and it plays a role in regulating collective cell migration. As the curvature of a monolayer increases, cells reduce their collectivity and the multicellular flow field becomes more dynamic. Furthermore, hexagonally shaped cells tend to aggregate in solid-like clusters surrounded by non-hexagonal cells that act as a background fluid. We propose that cells naturally form hexagonally organized clusters to minimize free energy, and clusters' size is limited by a bending energy penalty. We observe that cluster size grows linearly as sphere radius increases, which further stabilizes the multicellular flow field and increases cell collectivity. As a result, increasing curvature tends to promote the fluidity in multicellular monolayer. Together, these findings highlight the potential for a fundamental role of curvature in regulating both spatial and temporal characteristics of three-dimensional multicellular systems.

摘要

集体细胞迁移是多细胞生物整个生命过程中的一个重要过程,例如在胚胎发育、伤口愈合和肿瘤转移中。与这些过程相关的底物或界面通常是弯曲的,其曲率半径与许多细胞长度相当。利用人工几何形状和源自人类诱导多能干细胞的肺泡球,我们在此表明细胞能够感知多细胞尺度的曲率,并且它在调节集体细胞迁移中发挥作用。随着单层曲率的增加,细胞降低其集体性,多细胞流场变得更加动态。此外,六边形细胞倾向于聚集在由作为背景流体的非六边形细胞包围的类似固体的簇中。我们提出细胞自然形成六边形组织的簇以最小化自由能,并且簇的大小受到弯曲能量惩罚的限制。我们观察到簇的大小随着球体半径的增加而线性增长,这进一步稳定了多细胞流场并增加了细胞集体性。结果,增加曲率倾向于促进多细胞单层中的流动性。总之,这些发现突出了曲率在调节三维多细胞系统的空间和时间特征方面发挥基本作用的潜力。

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