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Error analysis of metabolic-rate measurements in mammalian-cell culture by carbon and nitrogen balances

机译:碳氮平衡在哺乳动物细胞培养物中代谢率测量的误差分析

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The analysis of metabolic fluxes of large stoichiometric systems is sensitive to measurement errors in metabolic uptake and production rates. It is therefore desirable to independently test the consistency of measurement data, which is possible if at least two elemental balances can be closed. For mammalian-cell culture, closing the C balance has been hampered by problems in measuring the carbon-dioxide production rate. Here, it is shown for various sets of measurement data that the C balance can be closed by applying a method to correct for the bicarbonate buffer in the culture medium. The measurement data are subsequently subject to measurement-error analysis on the basis of the C and N balances. It is shown at 90% reliability that no gross measurement errors are present, neither in the measured production- and consumption rates, nor in the estimated in- and outgoing metabolic rates of te subnetwork, that contains the glycolysis, the pentose-phosphate, and the glutaminolysis pathways.
机译:大型化学计量系统的代谢通量分析对代谢吸收和生产率的测量误差敏感。因此,期望独立地测试测量数据的一致性,如果可以关闭至少两个元素天平,则这是可能的。对于哺乳动物细胞培养,由于测量二氧化碳产生速率的问题,阻碍了碳平衡的平衡。在此,对于各种测量数据集,可以通过应用一种校正培养基中碳酸氢盐缓冲液的方法来关闭C平衡。随后,根据C和N平衡对测量数据进行测量误差分析。以90%的可靠性显示,无论是在测得的生产和消费速度,还是在包含糖酵解,戊糖磷酸盐和谷氨酰胺分解途径。

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