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曲率诱导旋转球体组织中的主动速度波。

Curvature induces active velocity waves in rotating spherical tissues.

机构信息

Arnold-Sommerfeld-Center for Theoretical Physics, Ludwig-Maximilians-Universität München, Theresienstr. 37, 80333, Munich, Germany.

Department of Physics and Astronomy, Vrije Universiteit Amsterdam, 1081 HV, Amsterdam, The Netherlands.

出版信息

Nat Commun. 2023 Mar 24;14(1):1643. doi: 10.1038/s41467-023-37054-2.

Abstract

The multicellular organization of diverse systems, including embryos, intestines, and tumors relies on coordinated cell migration in curved environments. In these settings, cells establish supracellular patterns of motion, including collective rotation and invasion. While such collective modes have been studied extensively in flat systems, the consequences of geometrical and topological constraints on collective migration in curved systems are largely unknown. Here, we discover a collective mode of cell migration in rotating spherical tissues manifesting as a propagating single-wavelength velocity wave. This wave is accompanied by an apparently incompressible supracellular flow pattern featuring topological defects as dictated by the spherical topology. Using a minimal active particle model, we reveal that this collective mode arises from the effect of curvature on the active flocking behavior of a cell layer confined to a spherical surface. Our results thus identify curvature-induced velocity waves as a mode of collective cell migration, impacting the dynamical organization of 3D curved tissues.

摘要

多细胞系统的组织,包括胚胎、肠道和肿瘤,依赖于在弯曲环境中的协调细胞迁移。在这些环境中,细胞建立了超细胞的运动模式,包括集体旋转和浸润。虽然在平面系统中已经对这种集体模式进行了广泛的研究,但几何和拓扑约束对弯曲系统中集体迁移的影响在很大程度上还不清楚。在这里,我们发现了一种在旋转的球形组织中表现为传播的单波长速度波的细胞迁移的集体模式。这种波伴随着一种明显的不可压缩的超细胞流动模式,其拓扑缺陷由球形拓扑决定。使用一个最小的活性粒子模型,我们揭示了这种集体模式是由曲率对限制在球形表面上的细胞层的活性 flock 行为的影响引起的。因此,我们的结果确定了曲率诱导的速度波是一种集体细胞迁移的模式,影响了 3D 弯曲组织的动态组织。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/47f0/10039078/d6bcb2617c02/41467_2023_37054_Fig1_HTML.jpg

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