中国仓鼠卵巢细胞
糖酵解
缺氧(环境)
生物化学
细胞内
氧气
新陈代谢
生物
细胞生物学
线粒体
化学
单克隆抗体
细胞培养
细胞呼吸
活性氧
呼吸
仓鼠
脂肪酸代谢
毛茛
细胞
代谢途径
脂肪酸
乳酸脱氢酶
细胞外
细胞代谢
过氧化物酶体
碳水化合物代谢
生物合成
代谢组学
β氧化
功能(生物学)
丙酮酸
生物反应器
抗体
作者
Peihao Yin,Weifeng Li,Wenting Zhao,Meijin Guo,Jing Tong
摘要
Oxygen supply is critical for mammalian cell culture. Insufficient oxygen supply or oxygen inhomogeneity in large-scale bioreactors often leads to attenuated process performance, such as reduced cell growth, viability, and productivity. However, the understanding of how hypoxia affects process performance by modulating the underlying biological mechanisms of Chinese hamster ovary (CHO) cells remains limited. In this study, a comprehensive multi-omics analysis was performed to investigate the impact of hypoxia on intracellular biology. Systematic analysis of the multi-omics data revealed that moderate hypoxia suppressed mitochondrial respiration function and respiratory electron transport, while enhancing the activity of the glycolytic pathway. The reactive oxygen species (ROS) were also elevated under hypoxia. Correlation analysis revealed that the specific lactate production rate during the late-stage culture correlated significantly with the activity of the biosynthesis pathways for oxidized polyunsaturated fatty acid (PUFA) derivatives and cholesterol. This finding suggests that optimizing the levels of these compounds in the media might improve lactate metabolism and antibody production.
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