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A Mathematical Model for Fibroblast and Collagen Orientation

机译:成纤维细胞和胶原蛋白取向的数学模型

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Due to the increasing importance of the extracellular matrix in many biological problems, in this paper we develop a model for fibroblast and collagen orientation with the ultimate objective of understanding how fibroblasts form and remodel the extracellular matrix, in particular its collagen component. The model uses integrodifferential equations to describe the interaction between the cells and fibers at a point in space with various orientations. The equations are studied both analytically and numerically to discover different types of solutions and their behavior. In particular we examine solutions where all the fibroblasts and collagen have discrete orientations, a localized continuum of orientations and a continuous distribution of orientations with several maxima. The effect of altering the parameters in the system is explored, including the angular diffusion coefficient for the fibroblasts, as well as the strength and range of the interaction between fibroblasts and collagen. We find the initial conditions and the range of influence between the collagen and the fibroblasts are the two factors which determine the behavior of the solutions. The implications of this for wound healing and cancer are discussed including the conclusion that the major factor in determining the degree of scarring is the initial deposition of collagen.
机译:由于细胞外基质在许多生物学问题中的重要性日益提高,因此本文建立了成纤维细胞和胶原蛋白定向模型,其最终目的是了解成纤维细胞如何形成和重塑细胞外基质,尤其是其胶原蛋白成分。该模型使用积分微分方程来描述在空间中具有不同方向的某个点上的细胞与纤维之间的相互作用。对这些方程进行了分析和数值研究,以发现不同类型的解及其行为。特别是,我们检查了所有成纤维细胞和胶原蛋白具有离散方向,局部连续方向以及具有多个最大值的方向连续分布的解决方案。探索了改变系统参数的效果,包括成纤维细胞的角扩散系数,以及成纤维细胞和胶原蛋白相互作用的强度和范围。我们发现胶原蛋白和成纤维细胞的初始条件和影响范围是决定溶液行为的两个因素。讨论了其对伤口愈合和癌症的影响,包括以下结论:决定瘢痕形成程度的主要因素是胶原蛋白的初始沉积。

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