Zeng Yan, Lee Thong-See, Yu Peng, Roy Partha, Low Hong-Tong
Department of Mechanical Engineering, National University of Singapore, 9 Engineering Drive 1, Singapore 117576.
J Biomech Eng. 2006 Apr;128(2):185-93. doi: 10.1115/1.2170118.
Microchannel bioreactors have been used in many studies to manipulate and investigate the fluid microenvironment around cells. In this study, substrate concentrations and shear stresses at the base were computed from a three-dimensional numerical flow-model incorporating mass transport. Combined dimensionless parameters were developed from a simplified analysis. The numerical results of substrate concentration were well correlated by the combined parameters. The generalized results may find applications in design analysis of microchannel bioreactors. The mass transport and shear stress were related in a generalized result. Based on the generalized results and the condition of dynamic similarity, various means to isolate their respective effects on cells were considered.
微通道生物反应器已在许多研究中用于操控和研究细胞周围的流体微环境。在本研究中,通过一个包含传质的三维数值流动模型计算了基底处的底物浓度和剪切应力。通过简化分析得出了组合无量纲参数。底物浓度的数值结果与这些组合参数具有良好的相关性。这些广义结果可能会在微通道生物反应器的设计分析中得到应用。传质和剪切应力在一个广义结果中相互关联。基于广义结果和动态相似条件,考虑了各种分离它们对细胞各自影响的方法。