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优化代谢效率,提高高滴度补料分批培养中国仓鼠卵巢细胞的产物产量。

Tuning metabolic efficiency for increased product yield in high titer fed-batch Chinese hamster ovary cell culture.

机构信息

Process Sciences, Global Manufacturing Sciences, Biogen International GmbH, Luterbach, Switzerland.

出版信息

Biotechnol Prog. 2023 May-Jun;39(3):e3327. doi: 10.1002/btpr.3327. Epub 2023 Mar 7.

Abstract

High demand in manufactured biologics drives the continued need for increased productivity. In this study elevated lactate metabolization resulted in improved metabolic efficiency and cellular productivity for a readily intensified high titer fed-batch process. Scheduled base or lactate feeds during the stationary growth phase led to increased titers (+9% and +8% respectively) without impacting the overall growth performance. The higher lactate consumption induced by either feed strategy substituted for glutamate catabolism and consequently reduced ammonia build-up. Direct correlation between increased titers and reduced ammonia levels was shown. Product quality attributes were impacted by both feeding strategies but could be matched with the control process by shortening the cell culture duration while maintaining titer constant.

摘要

高需求的生物制品推动了生产力的持续提高。在这项研究中,升高的乳酸代谢导致代谢效率和细胞生产力的提高,从而实现了易于强化的高滴度补料分批过程。在静止生长阶段进行基础或乳酸补料,可分别提高 9%和 8%的滴度,而不影响整体生长性能。两种进料策略诱导的更高乳酸消耗替代了谷氨酸分解代谢,从而减少了氨的积累。结果表明,滴度的增加与氨水平的降低呈直接相关。两种进料策略都会影响产品质量属性,但通过缩短细胞培养时间而保持滴度不变,可以与对照工艺相匹配。

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