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用于组织工程应用的最优流灌注生物反应器的建模与设计。

Modeling and design of optimal flow perfusion bioreactors for tissue engineering applications.

机构信息

Materials Science Centre, Manchester University, Manchester, UK.

出版信息

Biotechnol Bioeng. 2012 Apr;109(4):1095-9. doi: 10.1002/bit.24368. Epub 2011 Nov 22.

Abstract

Perfusion bioreactors have been used in different tissue engineering applications because of their consistent distribution of nutrients and flow-induced shear stress within the tissue-engineering scaffold. A widely used configuration uses a scaffold with a circular cross-section enclosed within a cylindrical chamber and inlet and outlet pipes which are connected to the chamber on either side through which media is continuously circulated. However, fluid-flow experiments and simulations have shown that the majority of the flow perfuses through the center. This pattern creates stagnant zones in the peripheral regions as well as in those of high flow rate near the inlet and outlet. This non-uniformity of flow and shear stress, owing to a circular design, results in limited cell proliferation and differentiation in these areas. The focus of this communication is to design an optimized perfusion system using computational fluid dynamics as a mathematical tool to overcome the time-consuming trial and error experimental method. We compared the flow within a circular and a rectangular bioreactor system. Flow simulations within the rectangular bioreactor are shown to overcome the limitations in the circular design. This communication challenges the circular cross-section bioreactor configuration paradigm and provides proof of the advantages of the new design over the existing one.

摘要

灌流生物反应器因其能够在组织工程支架内均匀分布营养物质和流固剪切力,已被应用于不同的组织工程领域。其中一种广泛应用的构型是将具有圆形横截面的支架封闭在圆柱形腔室内,腔室的两侧分别通过进、出管道与外部连通,培养液可在腔室内持续循环。然而,流体流动实验和模拟表明,大部分的流动是从中心区域通过的。这种流动模式会在支架的外周区域以及靠近进出口的高流速区域形成停滞区。由于这种圆形设计,流动和剪切力的不均匀性会导致这些区域内细胞的增殖和分化受到限制。本研究旨在利用计算流体动力学(CFD)作为数学工具来设计优化的灌流系统,以克服耗时的反复试验的实验方法。我们比较了圆形和矩形生物反应器系统内的流动情况。结果表明,矩形生物反应器内的流动模拟能够克服圆形设计的局限性。本研究对圆形横截面生物反应器构型提出了挑战,并证明了新设计相对于现有设计的优势。

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