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首页> 外文期刊>Biotechnology Progress >Very High Density of CHO Cells in Perfusion by ATF or TFF in WAVE Bioreactor~(TM). Part I. Effect of the Cell Density on the Process
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Very High Density of CHO Cells in Perfusion by ATF or TFF in WAVE Bioreactor~(TM). Part I. Effect of the Cell Density on the Process

机译:在WAVE Bioreactor〜(TM)中通过ATF或TFF灌注的CHO细胞密度非常高。第一部分细胞密度对过程的影响

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High cell density perfusion process of antibody producing CHO cells was developed in disposable WAVE Bioreactor7 using external hollow fiber filter as cell separation device. Both "classical" tangential flow filtration (TFF) and alternating tangential flow system (ATF) equipment were used and compared. Consistency of both TFF- and ATF-based cultures was shown at 20-35 X 10 cells/mL density stabilized by cell bleeds. To minimize the nutrients deprivation and by-product accumulation, a perfusion rate correlated to the cell density was applied. The cells were maintained by cell bleeds at density 0.9-1.3 X 10 cellslmL in growing state and at high viability for more than 2 weeks. Finally, with the present settings, maximal cell densities of 2.14 X 10~8 cellslmL, achieved for the first time in a wave-induced bioreactor, and 1.32 X 10~8 cellslmL were reached using TFF and ATF systems, respectively. Using TFF, the cell density was limited by the membrane capacity for the encountered high viscosity and by the pCO2 level. Using ATF, the cell density was limited by the vacuum capacity failing to pull the highly viscous fluid. Thus, the TFF system allowed reaching higher cell densities. The TFF inlet pressure was highly correlated to the viscosity leading to the development of a model of this pressure, which is a useful tool for hollow fiber design of TFF and ATF. At very high cell density, the viscosity introduced physical limitations. This led us to recommend cell densities under 1.46 X 10 celllmL based on the analysis of the theoretical distance between the cells for the present cell line.
机译:使用外部中空纤维过滤器作为细胞分离装置,在一次性WAVE Bioreactor7中开发了产生抗体的CHO细胞的高细胞密度灌注过程。并比较了“经典”切向流过滤(TFF)和交替切向流系统(ATF)设备。基于TFF和ATF的培养物的一致性以20-35 X 10细胞/ mL的密度显示,并通过细胞出血得以稳定。为了最大程度地减少营养缺乏和副产物的积累,应用了与细胞密度相关的灌注速率。通过细胞流血以0.9-1.3×10个细胞/ mL的密度将细胞维持在生长状态并以高生存力维持超过2周。最后,在当前设置下,使用TFF和ATF系统分别在波诱导的生物反应器中首次达到最大细胞密度2.14 X 10〜8个细胞/ mL,分别达到1.32 X 10〜8个细胞/ mL。使用TFF,细胞密度受到遇到的高粘度的膜容量和pCO2水平的限制。使用ATF,由于真空能力无法吸引高粘度流体而限制了细胞密度。因此,TFF系统允许达到更高的细胞密度。 TFF入口压力与粘度高度相关,从而导致该压力模型的开发,这对于TFF和ATF的中空纤维设计是有用的工具。在非常高的孔密度下,粘度引入了物理限制。基于对当前细胞系细胞间理论距离的分析,这导致我们建议在1.46 X 10细胞/ mL下的细胞密度。

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