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Modelling biological cell attachment and growth on adherent surfaces

机译:模拟生物细胞在粘附表面的附着和生长

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A mathematical model, in the form of an integro-partial differential equation, is presented to describe the dynamics of cells being deposited, attaching and growing in the form of a monolayer across an adherent surface. The model takes into account that the cells suspended in the media used for the seeding have a distribution of sizes, and that the attachment of cells restricts further deposition by fragmenting the parts of the domain unoccupied by cells.Once attached the cells are assumed to be able to grow and proliferate over the domain by a process of infilling of the interstitial gaps; it is shown that without cell proliferation there is a slow build up of the monolayer but if the surface is conducive to cell spreading and proliferation then complete coverage of the domain by the monolayer can be achieved more rapidly. Analytical solutions of the model equations are obtained for special cases, and numerical solutions are presented for parameter values derived from experiments of rat mesenchymal stromal cells seeded onto thin layers of collagen-coated polyethylene terephthalate electrospun fibers. The model represents a new approach to describing the deposition, attachment and growth of cells over adherent surfaces, and should prove useful for studying the dynamics of the seeding of biomaterials.
机译:以整数-偏微分方程的形式,建立了一个数学模型,用来描述细胞在附着表面上以单层形式沉积,附着和生长的动力学。该模型考虑到悬浮在用于播种的培养基中的细胞具有大小分布,并且细胞的附着通过碎片化未被细胞占用的结构域的部分来限制进一步的沉积。通过填补间隙间隙的过程能够在域内生长和扩散;结果表明,在没有细胞增殖的情况下,单层的构建缓慢,但是如果表面有利于细胞扩散和增殖,则可以更快地实现单层完全覆盖域。针对特殊情况,获得了模型方程的解析解,并给出了参数值的数值解,这些参数值是从大鼠间充质基质细胞接种到胶原包覆的聚对苯二甲酸乙二醇酯电纺丝薄层上的实验得出的。该模型代表了一种描述粘附表面上细胞的沉积,附着和生长的新方法,应该被证明对研究生物材料播种的动力学很有用。

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