Metabolomic profiling of CHO fed‐batch growth phases at 10, 100, and 1,000 L

生物过程 代谢组学 中国仓鼠卵巢细胞 生物 生物化学 新陈代谢 生物反应器 过程分析技术 代谢物 指数增长 糖酵解 固定相 代谢工程 代谢通量分析 化学 色谱法 生物信息学 植物 受体 古生物学 数学分析 数学
作者
Maja Vodopivec,Ljerka Lah,Mojca Narat,Tomaž Curk
出处
期刊:Biotechnology and Bioengineering [Wiley]
卷期号:116 (10): 2720-2729 被引量:36
标识
DOI:10.1002/bit.27087
摘要

Established bioprocess monitoring is based on quick and reliable methods, including cell count and viability measurement, extracellular metabolite measurement, and the measurement of physicochemical qualities of the cultivation medium. These methods are sufficient for monitoring of process performance, but rarely give insight into the actual physiological states of the cell culture. However, understanding of the latter is essential for optimization of bioprocess development. Our study used LC-MS metabolomics as a tool for additional resolution of bioprocess monitoring and was designed at three bioreactors scales (10 L, 100 L, and 1,000 L) to gain insight into the basal metabolic states of the Chinese hamster ovary (CHO) cell culture during fed-batch. Metabolites characteristics of the four growth stages (early and late exponential phase, stationary phase, and the phase of decline) were identified by multivariate analysis. Enriched metabolic pathways were then established for each growth phase using the CHO metabolic network model. Biomass generation and nucleotide synthesis were enriched in early exponential phase, followed by increased protein production and imbalanced glutathione metabolism in late exponential phase. Glycolysis became downregulated in stationary phase and amino-acid metabolism increased. Phase of culture decline resulted in rise of oxidized glutathione and fatty acid concentrations. Intracellular metabolic profiles of the CHO fed-batch culture were also shown to be consistent with scale and thus demonstrate metabolomic profiling as an informative method to gain physiological insight into the cell culture states during bioprocess regardless of scale.
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