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用于共培养应用的微通道生物反应器中传质的数值模拟。

Numerical simulation on mass transport in a microchannel bioreactor for co-culture applications.

作者信息

Zeng Yan, Lee Thong-See, Yu Peng, Low Hong-Tong

机构信息

Department of Mechanical Engineering, National University of Singapore, 9 Engineering Drive 1, Singapore 117576.

出版信息

J Biomech Eng. 2007 Jun;129(3):365-73. doi: 10.1115/1.2720913.

Abstract

Microchannel bioreactors have applications for manipulating and investigating the fluid microenvironment on cell growth and functions in either single culture or co-culture. This study considers two different types of cells distributed randomly as a co-culture at the base of a microchannel bioreactor: absorption cells, which only consume species based on the Michaelis-Menten process, and release cells, which secrete species, assuming zeroth order reaction, to support the absorption cells. The species concentrations at the co-culture cell base are computed from a three-dimensional numerical flow-model incorporating mass transport. Combined dimensionless parameters are proposed for the co-culture system, developed from a simplified analysis under the condition of decreasing axial-concentration. The numerical results of species concentration at the co-culture cell-base are approximately correlated by the combined parameters under the condition of positive flux-parameter. Based on the correlated results, the critical value of the inlet concentration is determined, which depends on the effective microchannel length. For the flow to develop to the critical inlet concentration, an upstream length consisting only of release cells is needed; this upstream length is determined from an analytical solution. The generalized results may find applications in analyzing the mass transport requirements in a co-culture microchannel bioreactor.

摘要

微通道生物反应器可用于在单细胞培养或共培养中操纵和研究细胞生长及功能的流体微环境。本研究考虑了在微通道生物反应器底部随机分布的两种不同类型细胞作为共培养体系:吸收细胞,其仅基于米氏过程消耗物质;释放细胞,其假定为零级反应分泌物质以支持吸收细胞。共培养细胞底部的物质浓度通过包含传质的三维数值流动模型计算得出。针对共培养系统提出了组合无量纲参数,这些参数是在轴向浓度降低的条件下通过简化分析得出的。在正通量参数条件下,共培养细胞底部物质浓度的数值结果与组合参数大致相关。基于相关结果,确定了入口浓度的临界值,该临界值取决于有效微通道长度。为使流动发展到临界入口浓度,需要一段仅由释放细胞组成的上游长度;该上游长度由解析解确定。这些广义结果可能在分析共培养微通道生物反应器中的传质要求方面找到应用。

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