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Chemically defined media modifications to lower tryptophan oxidation of biopharmaceuticals

机译:化学定义的培养基改性为较低色氨酸氧化的生物制药

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Oxidation of biopharmaceuticals is a major product quality issue with potential impacts on activity and immunogenicity. At Eli Lilly and Company, high tryptophan oxidation was observed for two biopharmaceuticals in development produced in Chinese hamster ovary cells. A switch from historical hydrolysate-containing media to chemically defined media with a reformulated basal powder was thought to be responsible, so mitigation efforts focused on media modification. Shake flask studies identified that increasing tryptophan, copper, and manganese and decreasing cysteine concentrations were individual approaches to lower tryptophan oxidation. When amino acid and metal changes were combined, the modified formulation had a synergistic impact that led to substantially less tryptophan oxidation for both biopharmaceuticals. Similar results were achieved in shake flasks and benchtop bioreactors, demonstrating the potential to implement these modifications at manufacturing scale. The modified formulation did not negatively impact cell growth and viability, product titer, purity, charge variants, or glycan profile. A potential mechanism of action is presented for each amino acid or metal factor based on its role in oxidation chemistry. This work served not only to mitigate the tryptophan oxidation issue in two Lilly biopharmaceuticals in development, but also to increase our knowledge and appreciation for the impact of media components on product quality. (c) 2015 American Institute of Chemical Engineers Biotechnol. Prog., 32:178-188, 2016
机译:生物制药的氧化是一种主要的产品质量问题,具有对活动和免疫原性的潜在影响。在Eli Lilly and Company,观察到在中国仓鼠卵巢细胞中产生的两种生物制药中的高色氨酸氧化。认为将含有历史水解产物的培养基与具有重新制定的基础粉末的化学定义培养基的切换是负责任的,因此减轻了培养基修改的缓解力。摇动瓶研究发现,增加色氨酸,铜和锰和降低半胱氨酸浓度是单独的较低色电子氧化的方法。当合并氨基酸和金属变化时,改性配方具有协同撞击,导致两种生物制药的氧化基本上较少。在摇瓶和台式生物反应器中实现了类似的结果,展示了在制造规模上实施这些修改的可能性。改性配方对细胞生长和活力,产物滴度,纯度,电荷变体或聚糖型材没有负面影响。基于其在氧化化学中的作用,对每个氨基酸或金属因子提出了潜在的作用机制。这项工作不仅可以在两个李利利生物制药中减轻色氨酸氧化问题,还可以提高我们的知识和欣赏媒体组分对产品质量的影响。 (c)2015美国化学工程研究所生物科技。 Prog。,32:178-188,2016

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