Department of Micro- and Nanotechnology, Technical University of Denmark, DTU Nanotech, Kongens Lyngby, Denmark.
PLoS One. 2011 Jan 27;6(1):e14574. doi: 10.1371/journal.pone.0014574.
In recent years, the interest in small-scale bio-reactors has increased dramatically. To ensure homogeneous conditions within the complete area of perfused microfluidic bio-reactors, we develop a general design of a continually feed bio-reactor with uniform perfusion flow. This is achieved by introducing a specific type of perfusion inlet to the reaction area. The geometry of these inlets are found using the methods of topology optimization and shape optimization. The results are compared with two different analytic models, from which a general parametric description of the design is obtained and tested numerically. Such a parametric description will generally be beneficial for the design of a broad range of microfluidic bioreactors used for, e.g., cell culturing and analysis and in feeding bio-arrays.
近年来,人们对小规模生物反应器的兴趣显著增加。为了确保灌注微流控生物反应器整个区域内的均匀条件,我们开发了一种具有均匀灌注流的连续进料生物反应器的通用设计。这是通过向反应区域引入特定类型的灌注入口来实现的。这些入口的几何形状是使用拓扑优化和形状优化方法找到的。将结果与两种不同的分析模型进行比较,从中获得设计的通用参数描述并进行数值测试。这样的参数描述通常将有利于设计用于例如细胞培养和分析以及生物阵列进料的广泛的微流控生物反应器。