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The avian cell line AGE1.CR.pIX characterized by metabolic flux analysis

机译:通过代谢通量分析表征禽细胞系AGE1.CR.pIX

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Background In human vaccine manufacturing some pathogens such as Modified Vaccinia Virus Ankara, measles, mumps virus as well as influenza viruses are still produced on primary material derived from embryonated chicken eggs. Processes depending on primary cell culture, however, are difficult to adapt to modern vaccine production. Therefore, we derived previously a continuous suspension cell line, AGE1.CR.pIX, from muscovy duck and established chemically-defined media for virus propagation. Results To better understand vaccine production processes, we developed a stoichiometric model of the central metabolism of AGE1.CR.pIX cells and applied flux variability and metabolic flux analysis. Results were compared to literature dealing with mammalian and insect cell culture metabolism focusing on the question whether cultured avian cells differ in metabolism. Qualitatively, the observed flux distribution of this avian cell line was similar to distributions found for mammalian cell lines (e.g. CHO, MDCK cells). In particular, glucose was catabolized inefficiently and glycolysis and TCA cycle seem to be only weakly connected. Conclusions A distinguishing feature of the avian cell line is that glutaminolysis plays only a minor role in energy generation and production of precursors, resulting in low extracellular ammonia concentrations. This metabolic flux study is the first for a continuous avian cell line. It provides a basis for further metabolic analyses to exploit the biotechnological potential of avian and vertebrate cell lines and to develop specific optimized cell culture processes, e.g. vaccine production processes.
机译:背景技术在人类疫苗生产中,仍在衍生自胚胎鸡蛋的主要材料上产生一些病原体,例如改良的痘苗病毒安卡拉,麻疹,腮腺炎病毒以及流感病毒。但是,依赖于原代细胞培养的过程难以适应现代疫苗的生产。因此,我们以前从番鸭获得了一个连续的悬浮细胞系AGE1.CR.pIX,并建立了化学定义的病毒繁殖培养基。结果为了更好地了解疫苗的生产过程,我们开发了AGE1.CR.pIX细胞中心代谢的化学计量模型,并应用了通量变异性和代谢通量分析。将结果与有关哺乳动物和昆虫细胞培养代谢的文献进行比较,重点是培养的禽细胞代谢是否不同。定性地,观察到的该禽细胞系的通量分布类似于哺乳动物细胞系(例如CHO,MDCK细胞)的分布。特别地,葡萄糖被无效地分解代谢,并且糖酵解和TCA循环似乎仅是弱连接的。结论禽细胞系的一个显着特征是谷氨酰胺分解仅在能量产生和前体产生中起次要作用,导致细胞外氨浓度低。这项代谢通量研究是连续性禽细胞系的首次研究。它为进一步的代谢分析奠定了基础,以开发禽类和脊椎动物细胞系的生物技术潜力并开发特定的优化细胞培养过程,例如疫苗生产过程。

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