Piret J M, Cooney C L
Biotechnology Laboratory and Department of Chemical Engineering, University of British Columbia, Vancouver, BC, Canada.
Biotechnol Adv. 1990;8(4):763-83. doi: 10.1016/0734-9750(90)91996-t.
Cultivation of animal cells for the production of recombinant proteins is an important method for manufacturing complex proteins requiring posttranslational processing. One of the often considered methods for cultivation is by immobilization of the cells in hollow fiber bioreactors (HFBRs). These systems allow the cells to grow to high densities in a shear protected environment; furthermore the product can be accumulated in high concentration in the case of ultrafiltration HFBRs. Operation and scale-up are constrained by nutrient and product transport with oxygen transfer to growing cells being the most critical parameter. Mathematical models describing HFBRs have proved to be useful in quantitating and understanding the constraints and guiding the scale-up of this approach to animal cell cultivation.
培养动物细胞以生产重组蛋白是制造需要进行翻译后加工的复杂蛋白的重要方法。一种经常被考虑的培养方法是将细胞固定在中空纤维生物反应器(HFBRs)中。这些系统能使细胞在受剪切力保护的环境中生长至高密度;此外,在超滤中空纤维生物反应器的情况下,产物可以高浓度积累。操作和放大生产受到营养物质和产物运输的限制,其中向生长细胞的氧气传递是最关键的参数。已证明描述中空纤维生物反应器的数学模型在量化和理解这些限制以及指导这种动物细胞培养方法的放大生产方面很有用。