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Metabolic-flux analysis of hybridoma cells under oxidative and reductive stress using mass balances

机译:使用质量平衡分析氧化应激下杂交瘤细胞的代谢通量

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Hybridoma cells were grown at steady state under both reductiveand oxidative stress and the intracellular fluxes weredetermined by mass-balancing techniques. By decreasing the dissolved oxygen pressure (pO2) in the bioreactor, the reduced formof nicotinamide adenine nucleotide (NADH) was enhanced relativeto the oxidized form (NAD+). Oxidative stress, as a resultof which the NAP(P)+/NAD(P)H-ratio increases, was generatedby both the enhancement of the pO2 to 100% air saturationand by the addition of the artificial electron acceptorphenazine methosulphate (PMS) to the culture medium. It wasfound that fluxes of dehydrogenase reactions by which NAD(P)H isproduced decreased under hypoxic conditions. For example, thedegradation rates of arginine, isoleucine, lysine and theglutamate dehydrogenase flux were significantly lower at oxygenlimitation, and increased at higher pO2 levels and when PMSwas added to the culture medium. In contrast, the prolinesynthesis reaction, which requires NADPH, decreased under PMSstress. The flux of the NADH-requiring lactate dehydrogenase reaction also strongly decreased from 19 to 3,4 pmol/cell/day,under oxygen limitation and under PMS stress, respectively. Thedata show that metabolic-flux balancing can be used to determinehow mammalian respond to oxidative and reduction stress.
机译:杂交瘤细胞在还原和氧化应激下均稳定生长,并通过质量平衡技术确定细胞内通量。通过降低生物反应器中的溶解氧压力(pO2),烟酰胺腺嘌呤核苷酸(NADH)的还原形式相对于氧化形式(NAD +)有所增强。氧化应激是NAP(P)+ / NAD(P)H比增加的结果,是通过将pO2增强到100%的空气饱和度以及通过将人工电子受体甲基苯二甲磺酸甲酯(PMS)添加到空气中而产生的。培养基。发现在缺氧条件下产生NAD(P)H的脱氢酶反应通量减少。例如,精氨酸,异亮氨酸,赖氨酸和谷氨酸脱氢酶通量的降解速率在氧限制下显着降低,而在较高的pO2水平和将PMSwas添加到培养基中时,降解速率增加。相反,在PMSstress下,需要NADPH的脯氨酸合成反应减少了。在需氧量限制和PMS胁迫下,需要NADH的乳酸脱氢酶反应的通量也分别从19 p./p/cell/day大大降低至3,4 pmol / cell / day。数据表明,代谢通量平衡可用于确定哺乳动物如何应对氧化应激和还原应激。

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