Hossain Md Shakhawath, Bergstrom D J, Chen X B
Mechanical Engineering Department, University of Saskatchewan, 57 Campus Drive, Saskatoon, SK S7N 5A9, Canada.
Biotechnol Rep (Amst). 2014 Dec 8;5:55-62. doi: 10.1016/j.btre.2014.12.002. eCollection 2015 Mar.
Mathematical and numerical modelling of the tissue culture process in a perfusion bioreactor is able to provide insight into the fluid flow, nutrients and wastes transport, dynamics of the pH value, and the cell growth rate. Knowing the complicated interdependence of these processes is essential for optimizing the culture process for cell growth. This paper presents a resolved scale numerical simulation, which allows one not only to characterize the supply of glucose inside a porous tissue scaffold in a perfusion bioreactor, but also to assess the overall culture condition and predict the cell growth rate. The simulation uses a simplified scaffold that consists of a repeatable unit composed of multiple strands. The simulation results explore some problematic regions inside the simplified scaffold where the concentration of glucose becomes lower than the critical value for the chondrocyte cell viability and the cell growth rate becomes significantly reduced.
灌注生物反应器中组织培养过程的数学和数值模拟能够深入了解流体流动、营养物质和废物传输、pH值动态变化以及细胞生长速率。了解这些过程之间复杂的相互依存关系对于优化细胞生长的培养过程至关重要。本文提出了一种解析尺度数值模拟方法,该方法不仅能够表征灌注生物反应器中多孔组织支架内葡萄糖的供应情况,还能评估整体培养条件并预测细胞生长速率。该模拟使用了一种简化的支架,其由多个股线组成的可重复单元构成。模拟结果揭示了简化支架内一些存在问题的区域,在这些区域葡萄糖浓度低于软骨细胞活力的临界值,细胞生长速率显著降低。