Kyung Y S, Peshwa M V, Gryte D M, Hu W S
Department of Chemical Engineering & Materials Science, University of Minnesota, Minneapolis.
Cytotechnology. 1994;14(3):183-90. doi: 10.1007/BF00749615.
In a continuous culture with cell retention the perfusion rate must be adjusted dynamically to meet the cellular demand. An automated mechanism of adjusting the perfusion rate based on real-time measurement of the metabolic load of the bioreactor is important in achieving a high cell concentration and maintaining high viability. We employed oxygen uptake rate (OUR) measurement as an on-line metabolic indicator of the physiological state of the cells in the bioreactor and adjusted the perfusion rate accordingly. Using an internal hollow fiber microfiltration system for total cell retention, a cell concentration of almost 10(8) cells/mL was achieved. Although some aggregates were formed during the cultivation, the viability remained high as examined with confocal microscopy after fluorescent vital staining. The results demonstrate that on-line OUR measurement facilitates automated dynamic perfusion and allows a high cell concentration to be achieved.
在具有细胞截留的连续培养中,必须动态调整灌注速率以满足细胞需求。基于生物反应器代谢负荷的实时测量来自动调整灌注速率的机制,对于实现高细胞浓度和维持高活力至关重要。我们采用氧摄取率(OUR)测量作为生物反应器中细胞生理状态的在线代谢指标,并相应地调整灌注速率。使用内部中空纤维微滤系统进行全细胞截留,实现了近10⁸个细胞/毫升的细胞浓度。尽管在培养过程中形成了一些聚集体,但经荧光活体染色后用共聚焦显微镜检查发现活力仍然很高。结果表明,在线OUR测量有助于自动动态灌注,并能实现高细胞浓度。