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活性细胞群体计算模型的推导与模拟:重叠避免、可变形性、细胞间连接和细胞骨架力如何影响排列。

Derivation and simulation of a computational model of active cell populations: How overlap avoidance, deformability, cell-cell junctions and cytoskeletal forces affect alignment.

作者信息

Leech Vivienne, Kenny Fiona N, Marcotti Stefania, Shaw Tanya J, Stramer Brian M, Manhart Angelika

机构信息

Department of Mathematics, University College London, London, United Kingdom.

Randall Centre for Cell and Molecular Biophysics, King's College London, London, United Kingdom.

出版信息

PLoS Comput Biol. 2024 Jul 29;20(7):e1011879. doi: 10.1371/journal.pcbi.1011879. eCollection 2024 Jul.

Abstract

Collective alignment of cell populations is a commonly observed phenomena in biology. An important example are aligning fibroblasts in healthy or scar tissue. In this work we derive and simulate a mechanistic agent-based model of the collective behaviour of actively moving and interacting cells, with a focus on understanding collective alignment. The derivation strategy is based on energy minimisation. The model ingredients are motivated by data on the behaviour of different populations of aligning fibroblasts and include: Self-propulsion, overlap avoidance, deformability, cell-cell junctions and cytoskeletal forces. We find that there is an optimal ratio of self-propulsion speed and overlap avoidance that maximises collective alignment. Further we find that deformability aids alignment, and that cell-cell junctions by themselves hinder alignment. However, if cytoskeletal forces are transmitted via cell-cell junctions we observe strong collective alignment over large spatial scales.

摘要

细胞群体的集体排列是生物学中常见的现象。一个重要的例子是健康组织或瘢痕组织中排列的成纤维细胞。在这项工作中,我们推导并模拟了一个基于机制的、关于活跃移动和相互作用细胞集体行为的模型,重点是理解集体排列。推导策略基于能量最小化。模型要素的灵感来自于不同群体排列成纤维细胞行为的数据,包括:自我推进、重叠避免、可变形性、细胞间连接和细胞骨架力。我们发现,存在一个自我推进速度与重叠避免的最佳比例,可使集体排列最大化。此外,我们发现可变形性有助于排列,而细胞间连接本身会阻碍排列。然而,如果细胞骨架力通过细胞间连接传递,我们会观察到在大空间尺度上有强烈的集体排列。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d319/11309491/d81a23886827/pcbi.1011879.g001.jpg

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