Dong Haodi, Tang Ya-Jie, Ohashi Ryo, Hamel Jean-François P
Department of Chemical Engineering, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, Massachusetts 02139, USA.
Biotechnol Prog. 2005 Jan-Feb;21(1):140-7. doi: 10.1021/bp049826l.
A novel perfusion culture system for efficient production of IgG2a monoclonal antibody (mAb) by hybridoma cells was developed. A ceramic membrane module was constructed and used as a cell retention device installed in a conventional stirred-tank reactor during the perfusion culture. Furthermore, the significance of the control strategy of perfusion rate (volume of fresh medium/working volume of reactor/day, vvd) was investigated. With the highest increasing rate (deltaD, vvd per day, vvdd) of perfusion rate, the maximal viable cell density of 3.5 x 10(7) cells/mL was obtained within 6 days without any limitation and the cell viability was maintained above 95%. At lower deltaD's, the cell growth became limited. Under nutrient-limited condition, the specific cell growth rate (mu) was regulated by deltaD. During the nonlimited growth phase, the specific mAb production rate (qmAb) remained constant at 0.26 +/- 0.02 pg/cell x h in all runs. During the cell growth-limited phase, qmAb was regulated by deltaD within the range of 0.25-0.65 vvdd. Under optimal conditions, qmAb of 0.80 and 2.15 pg/cell x h was obtained during the growth-limited phase and stationary phase, respectively. The overall productivity and yield were 690 mg/L x day and 340 mg/L x medium, respectively. This study demonstrated that this novel perfusion culture system for suspension mammalian cells can support high cell density and efficient mAb production and that deltaD is an important control parameter to regulate and achieve high mAb production.
开发了一种用于杂交瘤细胞高效生产IgG2a单克隆抗体(mAb)的新型灌注培养系统。构建了一个陶瓷膜组件,并将其用作在灌注培养期间安装在传统搅拌罐反应器中的细胞保留装置。此外,还研究了灌注速率(新鲜培养基体积/反应器工作体积/天,vvd)控制策略的重要性。在灌注速率的最高增加率(deltaD,每天的vvd,vvdd)下,在6天内无需任何限制即可获得3.5×10⁷个细胞/mL的最大活细胞密度,并且细胞活力维持在95%以上。在较低的deltaD下,细胞生长受到限制。在营养限制条件下,比细胞生长速率(μ)受deltaD调节。在非限制生长阶段,所有运行中比mAb产生速率(qmAb)保持恒定在0.26±0.02 pg/细胞×小时。在细胞生长受限阶段,qmAb在0.25 - 0.65 vvdd范围内受deltaD调节。在最佳条件下,在生长受限阶段和稳定期分别获得了0.80和2.15 pg/细胞×小时的qmAb。总体生产力和产量分别为690 mg/L×天和340 mg/L×培养基。这项研究表明,这种用于悬浮哺乳动物细胞的新型灌注培养系统可以支持高细胞密度和高效的mAb生产,并且deltaD是调节和实现高mAb生产的重要控制参数。