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Measurement and control of dissolved carbon dioxide in mammalian cell culture processes using an in situ fiber optic chemical sensor

机译:使用原位光纤化学传感器测量和控制哺乳动物细胞培养过程中的溶解二氧化碳

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At high viable cell concentrations in large-scale mammalian cell culture processes, the accumulation of dissolved carbon dioxide (dCO_2, typically quantified as an equilibrium gas-phase concentration) becomes problematic as a result of low CO_2 removal rates at reduced surface-to-volume ratios. High dCO_2 concentrations have previously been shown to inhibit cell growth and product formation in mammalian cells and to alter the glycosylation pattern of recombinant proteins. Therefore, reliable monitoring and control of dCO_2 are important for successful large-scale operation. Off-line measurements by instruments such as blood gas analyzers (BGA) are constrained by the low frequency of data collection and cannot be used for on-line control. In a preliminary evaluation of the YSI 8500 in situ sensor, a response time (t-90%) of 6 min, sensitivity of 0.5% CO-2 (3.6 mmHg), and linearity of measurement (R~2 = 0.9997) between the equivalent gas-phase partial pressure of 0-180 mmHg (0% and 25% CO_2) were established. Measurements were found to be unaffected by culture pH and typical mammalian cell culture concentrations of glucose, glutamine, glutamate, lactate, and ammonium. The sensor withstood repeated sterilization and cleaning cycles. The reliabilityof this sensor was demonstrated in microcarrier-based Chinese hamster ovary (CHO) cell perfusion cultures at reactor scales of 30, 40, 340, and 2000 L and was successfully implemented in a dCO_2 control strategy using N_2 sparging.
机译:在大规模哺乳动物细胞培养过程中,当细胞中的活菌浓度很高时,由于二氧化碳的去除率低且表面积减小,因此溶解的二氧化碳(dCO_2,通常量化为平衡气相浓度)的积累成为问题。比率。先前已证明高dCO_2浓度会抑制哺乳动物细胞中的细胞生长和产物形成,并改变重组蛋白的糖基化模式。因此,可靠的dCO_2监视和控制对于成功进行大规模操作很重要。诸如血气分析仪(BGA)之类的仪器进行的离线测量受到数据收集频率的限制,因此不能用于在线控制。在对YSI 8500原位传感器进行的初步评估中,响应时间(t-90%)为6分钟,灵敏度为0.5%CO-2(3.6 mmHg),测量之间的线性度(R〜2 = 0.9997)建立了等效的气相分压0-180 mmHg(0%和25%CO_2)。发现测量不受培养pH和葡萄糖,谷氨酰胺,谷氨酸,乳酸和铵的典型哺乳动物细胞培养浓度的影响。传感器经受了反复的灭菌和清洁循环。该传感器的可靠性已在基于微载体的中国仓鼠卵巢(CHO)细胞灌注培养中以30、40、340和2000 L的反应堆规模得到了证明,并已成功地通过N_2喷射在dCO_2控制策略中实现。

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