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Modeling universal dynamics of cell spreading on elastic substrates

机译:模拟细胞在弹性基底上扩散的通用动力学

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A three-dimensional (3D) multiscale moving contact line model is combined with a soft matter cell model to study the universal dynamics of cell spreading over elastic substrates. We have studied both the early stage and the late stage cell spreading by taking into account the actin tension effect. In this work, the cell is modeled as an active nematic droplet, and the substrate is modeled as a St. Venant Kirchhoff elastic medium. A complete 3D simulation of cell spreading has been carried out. The simulation results show that the spreading area versus spreading time at different stages obeys specific power laws, which is in good agreement with experimental data and theoretical prediction reported in the literature. Moreover, the simulation results show that the substrate elasticity may affect force dipole distribution inside the cell. The advantage of this approach is that it combines the hydrodynamics of actin retrograde flow with moving contact line model so that it can naturally include actin tension effect resulting from actin polymerization and actomyosin contraction, and thus it might be capable of simulating complex cellular scale phenomenon, such as cell spreading or even crawling.
机译:将三维(3D)多尺度移动接触线模型与软物质细胞模型相结合,以研究细胞在弹性基材上扩散的通用动力学。我们已经通过考虑肌动蛋白张力效应研究了早期和晚期细胞扩散。在这项工作中,将细胞建模为活性向列液滴,将基材建模为St. Venant Kirchhoff弹性介质。已经完成了细胞扩散的完整3D模拟。仿真结果表明,不同阶段的扩散面积与扩散时间均符合特定的幂定律,与文献报道的实验数据和理论预测相吻合。此外,仿真结果表明,基底弹性可能会影响单元内部力偶极子的分布。这种方法的优势在于,它结合了肌动蛋白逆行流动的流体动力学和移动接触线模型,因此它可以自然地包含肌动蛋白聚合和肌动球蛋白收缩引起的肌动蛋白张力效应,因此它可能能够模拟复杂的细胞规模现象,例如细胞扩散甚至爬行。

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