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Multiscale modeling and simulation of soft adhesion and contact of stem cells.

机译:干细胞软粘附和接触的多尺度建模和仿真。

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摘要

Recently, we have developed a multiscale soft matter model for stem cells or primitive cells in general, aiming at improving the understanding of mechanotransduction mechanism of cells that is responsible for information exchange between cells and their extracellular environment. In this paper, we report the preliminary results of our research on multiscale modeling and simulation of soft contact and adhesion of cells. The proposed multiscale soft matter cell model may be used to model soft contact and adhesion between cells and their extracellular substrates. This model is a generalization of the Fluid Mosaic Model (Singer and Nicolson, 1972), or an extension of Helfrich's liquid crystal membrane model (Helfrich, 1973). To the best of the authors' knowledge, this may be the first time that a soft matter model is developed for cell contact and adhesion. Moreover we have developed and implemented a Lagrange type meshfree Galerkin formulation and the computational algorithm for the proposed cell model. Comparison study with experimental data has been conducted to validate the parameters of the model. By using the soft matter cell model, we have simulated the soft adhesive contact process between cells and their extracellular substrates. The simulation shows that the cell can sense substrate elasticity by responding in different manners from cell spreading motion to cell contact configurations.
机译:最近,我们已经针对干细胞或原始细胞开发了一种多尺度软物质模型,旨在增进对细胞机械传递机制的理解,该机制负责细胞及其细胞外环境之间的信息交换。在本文中,我们报告了我们对细胞软接触和粘附的多尺度建模和仿真研究的初步结果。提出的多尺度软物质细胞模型可用于模拟细胞及其细胞外基质之间的软接触和粘附。该模型是流体镶嵌模型(Singer和Nicolson,1972)的推广,或者是Helfrich的液晶膜模型的扩展(Helfrich,1973)。据作者所知,这可能是第一次为细胞接触和粘附开发软物质模型。此外,我们已经开发并实现了Lagrange型无网格Galerkin公式和所提出的单元模型的计算算法。已经进行了与实验数据的比较研究以验证模型的参数。通过使用软物质细胞模型,我们模拟了细胞与细胞外基质之间的软胶接触过程。仿真表明,该单元格可以通过以不同的方式从单元格展开运动到单元格接触配置作出响应,从而感测基底的弹性。

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