Culture media selection and feeding strategy for high titer production of a lentiviral vector by stable producer clones cultivated at high cell density

克隆(Java方法) 效价 细胞培养 生产力 生物 补料分批培养 HEK 293细胞 生物技术 细胞生长 选择(遗传算法) 食品科学 遗传学 计算机科学 基因 病毒 发酵 经济 人工智能 宏观经济学
作者
Chun Fang Shen,Sonia Tremblay,Catherine Sabourin-Poirier,Elodie Burney,Sophie Broussau,Aziza Manceur,Anja Rodenbrock,Robert Voyer,Martin Loignon,Sven Ansorge,Rénald Gilbert
出处
期刊:Bioprocess and Biosystems Engineering [Springer Nature]
卷期号:45 (8): 1267-1280
标识
DOI:10.1007/s00449-022-02737-5
摘要

Abstract The growing interest in the use of lentiviral vectors (LVs) for various applications has created a strong demand for large quantities of vectors. To meet the increased demand, we developed a high cell density culture process for production of LV using stable producer clones generated from HEK293 cells, and improved volumetric LV productivity by up to fivefold, reaching a high titer of 8.2 × 10 7 TU/mL. However, culture media selection and feeding strategy development were not straightforward. The stable producer clone either did not grow or grow to lower cell density in majority of six commercial HEK293 media selected from four manufacturers, although its parental cell line, HEK293 cell, grows robustly in these media. In addition, the LV productivity was only improved up to 53% by increasing cell density from 1 × 10 6 and 3.8 × 10 6 cells/mL at induction in batch cultures using two identified top performance media, even these two media supported the clone growth to 5.7 × 10 6 and 8.1 × 10 6 cells/mL, respectively. A combination of media and feed from different companies was required to provide diverse nutrients and generate synergetic effect, which supported the clone growing to a higher cell density of 11 × 10 6 cells/mL and also increasing LV productivity by up to fivefold. This study illustrates that culture media selection and feeding strategy development for a new clone or cell line can be a complex process, due to variable nutritional requirements of a new clone. A combination of diversified culture media and feed provides a broader nutrients and could be used as one fast approach to dramatically improve process performance.

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