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In-vitro cartilage growth: macroscopic mass transport modelling in a three-phase system

机译:体外软骨生长:三相系统中的宏观质量传输模型

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摘要

Transplantation of engineered tissues is of major interest as an alternative to autogenic alogenic or exogenic grafts. In this study, in vitro cartilage cell culture on a fibrous biodegradable polymer scaffold is under concern. The scaffold is first seeded with cells which adhere to the fibres and the system is then grown in a bioreactor. As reported in the literature, hydrodynamics and transport of nutrients and metabolic products during this growth process is of considerable importance, motivating our analysis.A one-equation macroscopic model was first developed in order to describe macroscopic mass transport during in vitro tissue growth using the volume averaging method. This model takes into account a three phase system composed of solid fibres, cell phase and fluid phase and allows determination of the macroscopic quantities as a function of microscopic properties and geometry at any stage of growth.In a second step, numerical tools for the computation of the effective properties were developed and validated. This validation is carried out using results available in the literature for some sub-classes of our model (namely, diffusion, diffusion/reaction and diffusion/advection problems in 2D systems). The behaviour of the macroscopic dispersion tensor for the complete model (diffusion/reaction/advection) in a three phase configuration is studied and the influence of different parameters such as the volume fractions of the phases, Peclet and Kinetic numbers is discussed.
机译:工程组织的移植作为自体生源或外源移植物的替代方案,是引起人们广泛关注的问题。在这项研究中,在纤维可生物降解的聚合物支架上的体外软骨细胞培养受到关注。首先在支架上接种粘附在纤维上的细胞,然后使系统在生物反应器中生长。正如文献报道的那样,在此生长过程中营养物质和代谢产物的流体动力学和传输非常重要,这激发了我们的分析。首先建立了一个单方程宏观模型,以描述在体外组织生长过程中的宏观质量传输。体积平均法。该模型考虑了由固相纤维,细胞相和流体相组成的三相系统,并允许在生长的任何阶段确定宏观量作为微观性质和几何形状的函数。第二步,用于计算的数值工具开发并验证了有效特性。使用我们模型中某些子类的文献中可获得的结果(即2D系统中的扩散,扩散/反应和扩散/对流问题)进行验证。研究了完整模型(扩散/反应/对流)在三相结构中的宏观色散张量的行为,并讨论了不同参数(如相的体积分数,Peclet和动力学数)的影响。

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