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Continuum mechanics modelling of microfilament networks with different architectures based on molecular investigation of single F-actin

机译:基于单个F-肌动蛋白分子研究的具有不同结构的微丝网络的连续体力学建模

摘要

The actin microfilament plays a critical role in many cellular processes including embryonic development, wound healing, immune response, and tissue development. It is commonly organized in the form of networks whose mechanical properties change with changes in their architecture due to cell evolution processes. This paper presents a new nonlinear continuum mechanics model of single filamentous actin (F-actin) that is based on nanoscale molecular simulations. Following this continuum model of the single F-actin, mechanical properties of differently architected lamellipodia are studied. The results provide insight that can contribute to the understanding of the cell edge motions of living cells.
机译:肌动蛋白微丝在包括胚胎发育,伤口愈合,免疫反应和组织发育在内的许多细胞过程中起着至关重要的作用。它通常以网络的形式进行组织,由于细胞进化过程,其机械性能会随着其体系结构的变化而变化。本文提出了一种基于纳米级分子模拟的新的单丝肌动蛋白(F-肌动蛋白)非线性连续体力学模型。遵循单一F-肌动蛋白的连续模型,研究了不同结构的片状脂蛋白的力学性能。结果提供了可有助于理解活细胞的细胞边缘运动的见解。

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