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Designed Amino Acid Feed in Improvement of Production and Quality Targets of a Therapeutic Monoclonal Antibody

机译:设计氨基酸饲料可提高治疗性单克隆抗体的生产和质量指标

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摘要

Cell culture feeds optimization is a critical step in process development of pharmaceutical recombinant protein production. Amino acids are the basic supplements of mammalian cell culture feeds with known effect on their growth promotion and productivity. In this study, we reported the implementation of the Plackett-Burman (PB) multifactorial design to screen the effects of amino acids on the growth promotion and productivity of a Chinese hamster ovary DG-44 (CHO-DG44) cell line producing bevacizumab. After this screening, the amino acid combinations were optimized by the response surface methodology (RSM) to determine the most effective concentration in feeds. Through this strategy, the final monoclonal antibody (mAb) titre was enhanced by 70%, compared to the control group. For this particular cell line, aspartic acid, glutamic acid, arginine and glycine had the highest positive effects on the final mAb titre. Simultaneously, the impact of the designed amino acid feed on some critical quality attributes of bevacizumab was examined in the group with highest productivity. The product was analysed for N-glycan profiles, charge variant distribution, and low molecular weight forms. The results showed that the target product quality has been improved using this feeding strategy. It was shown how this strategy could significantly diminish the time and number of experiments in identifying the most effective amino acids and related concentrations in target product enhancement. This model could be successfully applied to other components of culture media and feeds.
机译:细胞培养饲料的优化是药物重组蛋白生产过程开发中的关键步骤。氨基酸是哺乳动物细胞培养饲料的基本补充剂,具有促进生长和生产力的已知作用。在这项研究中,我们报告了P​​lackett-Burman(PB)多因素设计的实施,以筛选氨基酸对产生贝伐单抗的中国仓鼠卵巢DG-44(CHO-DG44)细胞系的生长促进和生产力的影响。筛选后,通过响应面法(RSM)优化氨基酸组合,以确定饲料中最有效的浓度。通过这种策略,与对照组相比,最终的单克隆抗体(mAb)滴度提高了70%。对于这种特定的细胞系,天冬氨酸,谷氨酸,精氨酸和甘氨酸对最终mAb滴度具有最高的阳性作用。同时,在生产率最高的组中检查了设计的氨基酸饲料对贝伐单抗某些关键质量属性的影响。分析产物的N-聚糖谱,电荷变体分布和低分子量形式。结果表明,使用这种喂食策略可以提高目标产品的质量。结果表明,该策略如何显着减少鉴定目标产物增强中最有效氨基酸和相关浓度的实验时间和次数。该模型可以成功地应用于培养基和饲料的其他成分。

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