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氨基酸补料对工业用中国仓鼠卵巢细胞过程的影响。

The effect of amino acid supplementation in an industrial Chinese Hamster Ovary process.

机构信息

Biopharmaceuticals, Lek d.d., Novartis, Mengeš, Mengeš, Slovenia.

Department of Animal Sciences, Biotechnical Faculty, Domžale, Slovenia.

出版信息

Biotechnol Prog. 2020 Sep;36(5):e3001. doi: 10.1002/btpr.3001. Epub 2020 Apr 25.

Abstract

The main goal in biosimilar development is to increase Chinese Hamster Ovary (CHO) viability and productivity while maintaining product quality. Despite media and feed optimization during process development, depletion of amino acids still occurs. The aim of the work was to optimize an existing industrial fed batch process by preventing shortage of amino acids and to gather knowledge about CHO metabolism. Several process outputs were evaluated such as cell metabolism, cell viability, monoclonal antibodies (mAbs) production, and product quality. First step was to develop and supplement an enriched feed containing depleted amino acids. Abundance of serine and glucose increased lactate production resulting in low viability and low productivity. In the next step, we developed an amino acid feed without serine to avoid the metabolic boost. Supplemented amino acids improved cell viability by 9%; however, mAb production did not increase significantly. In the final step, we limited glucose concentration (<5.55 mmol/L) in the cell culture to avoid the metabolic boost while supplementing an amino acid feed including serine. Data analysis showed that we were able to (a) replace depleted amino acids and avoid metabolic boost, (b) increase viability by 12%, (c) enhance mAb production by 0.5 g/L (total by approximately 10 g), and (d) extend the overall process time of an already developed bioprocess.

摘要

生物类似药开发的主要目标是在维持产品质量的同时,提高中国仓鼠卵巢(CHO)的存活率和产量。尽管在工艺开发过程中进行了媒体和补料优化,但氨基酸仍会耗尽。本工作旨在通过防止氨基酸短缺来优化现有的工业分批补料工艺,并积累 CHO 代谢方面的知识。评估了几个工艺输出,如细胞代谢、细胞活力、单克隆抗体(mAb)生产和产品质量。第一步是开发和补充含有消耗氨基酸的强化饲料。丝氨酸和葡萄糖的丰度增加导致乳酸产量增加,从而导致细胞活力和产量降低。在下一步中,我们开发了一种不含丝氨酸的氨基酸饲料,以避免代谢增强。补充氨基酸可将细胞活力提高 9%;然而,mAb 的产量并没有显著增加。在最后一步,我们将细胞培养物中的葡萄糖浓度(<5.55 mmol/L)限制在 5.55mmol/L 以下,以避免代谢增强,同时补充含有丝氨酸的氨基酸饲料。数据分析表明,我们能够(a)替代消耗的氨基酸并避免代谢增强,(b)提高细胞活力 12%,(c)提高 mAb 产量 0.5 g/L(总计约 10 g),(d)延长已经开发的生物工艺的整体工艺时间。

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