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首页> 外文期刊>Biotechnology and Bioengineering >Effect of Culture Temperature on Erythropoietin Production and Glycosylation in a Perfusion Culture of Recombinant CHO Cells
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Effect of Culture Temperature on Erythropoietin Production and Glycosylation in a Perfusion Culture of Recombinant CHO Cells

机译:培养温度对重组CHO细胞灌流培养中促红细胞生成素和糖基化的影响

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To investigate the effect of culture temperature on erythropoietin (EPO) production and glycosylation in recombinant Chinese hamster ovary (CHO) Cells, We cultivated CHO cells using a perfusion bioreactor. Cells were cultivated at 37 degrees C until viable cell concentration reached 1 x 10(7) cells/mL, and then Culture temperature was shifted to 25 degrees C, 28 degrees C, 30 degrees C, 32 degrees C, 37 degrees C (control), respectively. Lowering culture temperature suppressed cell growth but was beneficial to maintain high cell viability for a longer period. In a control Culture at 37 degrees C, cell viability gradually decreased and fell below 80% on day 18 while it remained over 90% throughout the culture at low culture temperature. The cumulative EPO production and specific EPO productivity, q(EPO), increased at low culture temperature and were the highest at 32 degrees C and 30 degrees C, respectively. Interestingly, the cumulative EPO production at culture temperature below 32 degrees C was not as high as the cumulative EPO production at 32 degrees C although the q(EPO) at culture temperature below 32 degrees C was comparable or even higher than the q(EPO) at 32 degrees C. This implies that the beneficial effect of lowering culture temperature below 32 degrees C on q(EPO) is outweighed by its detrimental effect on the integral of viable cells. The glycosylation of EPO was evaluated by isoelectric focusing, normal phase HPLC and anion exchange chromatogaphy analyses. The quality of EPO at 32 degrees C in regard to acidic isoforms, antennary structures and sialylated N-linked glycans was comparable to that at 37 degrees C. However, at culture temperatures below 32 degrees C, the proportions of acidic isoforms, tetra-antennary structures and tetra - sialylated N-linked glycans were further reduced, suggesting that lowering culture temperature below 32 degrees C negatively affect the quality of EPO. Thus, taken together, cell culture at 32 degrees C turned out to be the most satisfactory since it showed the highest cumulative EPO production, and moreover, EPO quality at 32 degrees C was not deteriorated as obtained at 37 degrees C.
机译:为了研究培养温度对重组中国仓鼠卵巢(CHO)细胞中促红细胞生成素(EPO)产生和糖基化的影响,我们使用灌注生物反应器培养了CHO细胞。在37摄氏度下培养细胞,直到活细胞浓度达到1 x 10(7)个细胞/毫升,然后将培养温度移至25摄氏度,28摄氏度,30摄氏度,32摄氏度,37摄氏度(对照), 分别。降低培养温度可抑制细胞生长,但有利于长时间保持高细胞活力。在37℃的对照培养物中,细胞活力在第18天逐渐降低并降至80%以下,而在低培养温度下在整个培养中其保持超过90%。在较低的培养温度下,累积的EPO产量和比EPO生产率q(EPO)有所增加,分别在32摄氏度和30摄氏度时最高。有趣的是,尽管在低于32摄氏度的培养温度下的q(EPO)与q(EPO)相当甚至更高,但在低于32摄氏度的培养温度下的EPO累积产量却不如32摄氏度下的EPO产量高。在32摄氏度时,这意味着将培养温度降低到32摄氏度以下对q(EPO)的有益效果被其对活细胞整体的不利影响所抵消。通过等电聚焦,正相HPLC和阴离子交换色谱分析对EPO的糖基化进行评估。在32摄氏度下,关于酸性同工型,触角结构和唾液酸化的N联聚糖的EPO质量与37摄氏度下的EPO质量相当。但是,在低于32摄氏度的培养温度下,酸性同工型,四触角的比例结构和四唾液酸化的N-连接聚糖进一步减少,表明将培养温度降低到32摄氏度以下会对EPO的质量产生负面影响。因此,总的来说,由于在32℃下的细胞培养表现出最高的累积EPO产量,因此是最令人满意的,此外,如在37℃下获得的,在32℃下的EPO质量没有劣化。

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