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细胞单层的整数拓扑缺陷:力学和流动。

Integer topological defects of cell monolayers: Mechanics and flows.

机构信息

Department of Biochemistry, University of Geneva, 1211 Geneva, Switzerland.

Department of Theoretical Physics, University of Geneva, 1211 Geneva, Switzerland.

出版信息

Phys Rev E. 2021 Jan;103(1-1):012405. doi: 10.1103/PhysRevE.103.012405.

Abstract

Monolayers of anisotropic cells exhibit long-ranged orientational order and topological defects. During the development of organisms, orientational order often influences morphogenetic events. However, the linkage between the mechanics of cell monolayers and topological defects remains largely unexplored. This holds specifically at the timescales relevant for tissue morphogenesis. Here, we build on the physics of liquid crystals to determine material parameters of cell monolayers. In particular, we use a hydrodynamical description of an active polar fluid to study the steady-state mechanical patterns at integer topological defects. Our description includes three distinct sources of activity: traction forces accounting for cell-substrate interactions as well as anisotropic and isotropic active nematic stresses accounting for cell-cell interactions. We apply our approach to C2C12 cell monolayers in small circular confinements, which form isolated aster or spiral topological defects. By analyzing the velocity and orientational order fields in spirals as well as the forces and cell number density fields in asters, we determine mechanical parameters of C2C12 cell monolayers. Our work shows how topological defects can be used to fully characterize the mechanical properties of biological active matter.

摘要

各向异性细胞单层表现出长程取向有序和拓扑缺陷。在生物体的发育过程中,取向有序常常影响形态发生事件。然而,细胞单层的力学和拓扑缺陷之间的联系在很大程度上仍未得到探索。特别是在与组织形态发生相关的时间尺度上。在这里,我们基于液晶物理学来确定细胞单层的材料参数。具体来说,我们使用活性各向异性流体的流体动力学描述来研究整数拓扑缺陷处的稳态力学模式。我们的描述包括三个不同的活性源:牵引力用于解释细胞-基底相互作用,以及各向异性和各向同性的活性向列应力用于解释细胞-细胞相互作用。我们将我们的方法应用于 C2C12 细胞单层在小的圆形约束中,其形成孤立的星状或螺旋拓扑缺陷。通过分析螺旋中的速度和取向有序场以及星状中的力和细胞数密度场,我们确定了 C2C12 细胞单层的力学参数。我们的工作表明,拓扑缺陷如何可用于完全表征生物活性物质的力学性质。

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