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不同生理状态下杂交瘤细胞的细胞代谢分析。

Analysis of cellular metabolism of hybridoma cells at distinct physiological states.

作者信息

Gambhir Anshu, Korke Rashmi, Lee Jongchan, Fu Peng-Cheng, Europa Anna, Hu Wei-Shou

机构信息

Department of Chemical Engineering and Materials Science, University of Minnesota, 421 Washington Avenue SE, Minneapolis, MN 55455-0132, USA.

出版信息

J Biosci Bioeng. 2003;95(4):317-27. doi: 10.1016/s1389-1723(03)80062-2.

Abstract

Hybridoma cells were cultivated in a chemically defined medium in continuous cultures. These cultures reached different steady states marked by distinctive cell metabolism depending on the culture conditions leading to the steady state. Those steady states with different metabolism are characterized by different stoichiometric ratios of lactate production to glucose consumption (deltaL/deltaG). The specific consumption rates of glucose, glutamine and other amino acids are reduced when DeltaL DeltaG reduces. Those steady states do not have a few discrete values of deltaL/deltaGs , rather they span from a high deltaL/deltaG state (> 1.0) to an intermediate state (0.1 < or = deltaL/deltaG < or = 1.0), and reduces even further at a low deltaL/deltaG state (< 0.1). Metabolic flux analysis was performed to compare energy metabolism of cells in cultures representing these three distinct metabolic states. The material balance on carbon and nitrogen was facilitated by the use of chemically defined medium. The formation of biomass was systematically estimated. It was revealed that all glycolysis and TCA cycle fluxes are reduced as deltaL/deltaG decreases. At the low deltaL/deltaG state, a reduction in amino acid specific consumption rate is accompanied by a reduction in all the fluxes around pyruvate. The analysis also shows that the outflux from the TCA cycle to form pyruvate, which contributes to lactate formation, is possibly linked to the higher consumption rate of amino acids at the high deltaL/deltaG state. Taken together the results suggest the amino acid metabolism plays an important role in reducing lactate production in mammalian cell culture.

摘要

杂交瘤细胞在化学成分明确的培养基中进行连续培养。根据导致稳态的培养条件,这些培养物达到了以独特细胞代谢为特征的不同稳态。那些具有不同代谢的稳态的特征是乳酸产生与葡萄糖消耗的化学计量比(ΔL/ΔG)不同。当ΔL/ΔG降低时,葡萄糖、谷氨酰胺和其他氨基酸的比消耗速率会降低。这些稳态没有几个离散的ΔL/ΔG值,而是从高ΔL/ΔG状态(>1.0)到中间状态(0.1≤ΔL/ΔG≤1.0),并在低ΔL/ΔG状态(<0.1)时进一步降低。进行代谢通量分析以比较代表这三种不同代谢状态的培养物中细胞的能量代谢。使用化学成分明确的培养基有助于碳和氮的物料平衡。系统地估计了生物量的形成。结果表明,随着ΔL/ΔG的降低,所有糖酵解和三羧酸循环通量都会降低。在低ΔL/ΔG状态下,氨基酸比消耗速率的降低伴随着丙酮酸周围所有通量的降低。分析还表明,三羧酸循环中形成丙酮酸的流出(这有助于乳酸的形成)可能与高ΔL/ΔG状态下较高的氨基酸消耗速率有关。综合这些结果表明,氨基酸代谢在降低哺乳动物细胞培养中乳酸产生方面起着重要作用。

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