首页> 外文期刊>Biotechnology Journal: Healthcare,Nutrition,Technology >C-13 Flux Analysis Reveals that Rebalancing Medium Amino Acid Composition can Reduce Ammonia Production while Preserving Central Carbon Metabolism of CHO Cell Cultures
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C-13 Flux Analysis Reveals that Rebalancing Medium Amino Acid Composition can Reduce Ammonia Production while Preserving Central Carbon Metabolism of CHO Cell Cultures

机译:C-13助焊剂分析表明,重新平衡培养基氨基酸组合物可以减少氨生产,同时保持CHO细胞培养物的中央碳代谢

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C-13 metabolic flux analysis (MFA) provides a rigorous approach to quantify intracellular metabolism of industrial cell lines. In this study, C-13 MFA was used to characterize the metabolic response of Chinese hamster ovary (CHO) cells to a novel medium variant designed to reduce ammonia production. Ammonia inhibits growth and viability of CHO cell cultures, alters glycosylation of recombinant proteins, and enhances product degradation. Ammonia production was reduced by manipulating the amino acid composition of the culture medium; specifically, glutamine, glutamate, asparagine, aspartate, and serine levels were adjusted. Parallel C-13 flux analysis experiments determined that, while ammonia production decreased by roughly 40%, CHO cell metabolic phenotype, growth, viability, and monoclonal antibody (mAb) titer were not significantly altered by the changes in media composition. This study illustrates how C-13 flux analysis can be applied to assess the metabolic effects of media manipulations on mammalian cell cultures. The analysis revealed that adjusting the amino acid composition of CHO cell culture media can effectively reduce ammonia production while preserving fluxes throughout central carbon metabolism.
机译:C-13代谢通量分析(MFA)提供了定量产业细胞系的细胞内代谢的严格方法。在该研究中,C-13MFA用于表征中国仓鼠卵巢(CHO)细胞的代谢反应,以旨在减少氨生产的新型介质变体。氨抑制CHO细胞培养物的生长和活力,改变重组蛋白的糖基化,并增强产物降解。通过操纵培养基的氨基酸组成来降低氨生产;具体地,调节谷氨酰胺,谷氨酸,天冬酰胺,天冬氨酸和丝氨酸水平。并行C-13助焊剂分析实验确定,虽然亚氨基的产量降低,CHO细胞代谢表型,生长,活力和单克隆抗体(MAB)滴度没有显着改变培养基组合物的变化。该研究说明了C-13通量分析如何应用于评估培养媒体操纵对哺乳动物细胞培养物的代谢效应。该分析显示,调节Cho细胞培养基的氨基酸组成可以有效地减少氨生产,同时在中央碳代谢中保持助熔剂。

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