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软骨组织工程支架中细胞生长与扩散的分析

Analysis of cell growth and diffusion in a scaffold for cartilage tissue engineering.

作者信息

Chung C A, Yang C W, Chen C W

机构信息

Department of Mechanical Engineering, National Central University, Jhongli, Taiwan 320, ROC.

出版信息

Biotechnol Bioeng. 2006 Aug 20;94(6):1138-46. doi: 10.1002/bit.20944.

Abstract

Developments in tissue engineering over the past decade have offered promising future for the repair and reconstruction of damaged tissues. To regenerate three dimensional and weight-bearing implants, advances in biomaterials and manufacturing technologies prompted cell cultivations with natural or artificial scaffolds, in which cells are allowed to proliferate, migrate, and differentiate in vitro. In this article, we develop a mathematical model for cell growth in a porous scaffold. By treating the cell-scaffold construct as a porous medium, a continuum model is set up based on basic principles of mass conservation. In addition to cell growth kinetics, we incorporate cell diffusion in the model to describe the effects of cell random walks. Computational results are compared to experimental data found in the literature. With this model, we are able to investigate cell motility, heterogeneous cell distributions, and non-uniform seeding for tissue engineering applications. Results show that random walks tend to enhance uniform cell spreads in space, which in turn increases the probabilities for cells to acquire nutrients; therefore random walks are likely to be a positive contribution to the overall cell growth on scaffolds.

摘要

在过去十年中,组织工程学的发展为受损组织的修复和重建带来了充满希望的未来。为了再生三维且能承重的植入物,生物材料和制造技术的进步促使了利用天然或人工支架进行细胞培养,在这些支架中,细胞能够在体外增殖、迁移和分化。在本文中,我们针对多孔支架中的细胞生长建立了一个数学模型。通过将细胞 - 支架构建体视为多孔介质,基于质量守恒的基本原理建立了一个连续介质模型。除了细胞生长动力学外,我们还在模型中纳入了细胞扩散,以描述细胞随机游动的影响。将计算结果与文献中找到的实验数据进行了比较。借助这个模型,我们能够研究细胞运动性、细胞的非均匀分布以及用于组织工程应用的非均匀接种情况。结果表明,随机游动倾向于增强细胞在空间中的均匀分布,这反过来又增加了细胞获取营养的概率;因此,随机游动可能对支架上细胞的整体生长起到积极作用。

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