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Analysis of CHO cells metabolic redistribution in a glutamate-baseddefined medium in continuous culture

机译:连续培养的谷氨酸基定义培养基中的CHO细胞代谢再分布分析

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The effect of glutamine replacement by glutamate and the balance between glutamate and glucose metabolism on the redistribution of t-PA-producing recombinant CHO cells metabolism is studied in a series of glucose shift down and shift up experiments in continuous culture. These experiments reveal the existence of multiple steady states, and experimental data are used to perform metabolic flux analysis to gain a better insight into cellular metabolism and its redistribution. Regulation of glucose feed rate promotes a higher efficiency of glucose and nitrogen source utilization, with lower production of metabolic byproducts, but this reduces t-PA specific production rate. This reduction under glucose limitation can be attributed to the fact that the cells are forced to efficiently utilize the carbon and energy source for growth, impairing the production of dispensable metabolites. It is, therefore, the combination of growth rate and carbon and energy source availability that determines the level of t-PA production in continuous culture.
机译:在连续培养的一系列葡萄糖向下和向上移动实验中,研究了谷氨酸替代谷氨酰胺以及谷氨酸和葡萄糖代谢之间的平衡对产生t-PA的重组CHO细胞代谢重新分布的影响。这些实验揭示了多个稳态的存在,并使用实验数据进行代谢通量分析,以更好地了解细胞代谢及其重新分布。葡萄糖进料速率的调节促进了较高的葡萄糖和氮源利用效率,并降低了代谢副产物的产生,但是这降低了t-PA比生产率。葡萄糖限制下的这种减少可归因于以下事实:细胞被迫有效地利用碳和能源进行生长,从而损害了可分配代谢产物的产生。因此,决定连续培养中t-PA产量的是增长率,碳和能源的可利用性。

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