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Effect of N-acetylcystein on butyrate-treated Chinese hamster ovary cells to improve the production of recombinant human interferon-beta-1a

机译:N-乙酰半胱氨酸对丁酸酯处理的中国仓鼠卵巢细胞的影响,以提高重组人干扰素-β-1a的产生

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摘要

Sodium butyrate (NaBu) is used as a productivity enhancer for the production of therapeutic recombinant proteins in Chinese hamster ovary (CHO) cells. However, NaBu is well-known for having a cytotoxic effect, thereby inducing apoptosis. As an endeavor to reduce this defect, we studied 11 antioxidants known for inhibiting apoptosis, according to a Plackett-Burman statistical design on CHO cells producing recombinant interferon-beta-1a (IFN-beta). None of the antioxidants that we tested were as effective as N-acetylcystein (NAC) from the point of view of maintaining long-term survival of CHO cells and increasing the production of IFN-beta. In 7.5-L perfusion bioreactor cultures, the addition of NaBu and NAC elongated the culture period to almost 200 h throughout production phase and increased the production yield by 2-fold compared to control cultures containing only NaBu. Glycosylation patterns of produced IFN-beta at each run were also compared in IEF analysis. IEF profiles of where NaBu and NAC were added showed to be more isoforms with a lower pI than those of the control run. The sialic acid content was also increased by 17.7% according to HPLC analysis. Taken together, the data obtained demonstrate that the addition of NAC has positive effects on the elongation of the culture period, improving the production and increasing the sialylation of IFN-beta in NaBu-treated CHO cells.
机译:丁酸钠(NaBu)用作生产力增强剂,可在中国仓鼠卵巢(CHO)细胞中产生治疗性重组蛋白。但是,众所周知NaBu具有细胞毒性作用,从而诱导细胞凋亡。为了减少这种缺陷,我们对产生重组干扰素-β-1a(IFN-β)的CHO细胞进行了Plackett-Burman统计设计,研究了11种已知可抑制细胞凋亡的抗氧化剂。从维持CHO细胞的长期存活和增加IFN-β的生产量来看,我们测试的抗氧化剂均没有N-乙酰半胱氨酸(NAC)那样有效。与仅含NaBu的对照培养物相比,在7.5 L灌注生物反应器培养物中,NaBu和NAC的添加将整个生产阶段的培养时间延长至近200小时,并使产量提高了2倍。在IEF分析中还比较了每次运行时产生的IFN-β的糖基化模式。与对照组相比,添加NaBu和NAC的IEF图谱显示其pI更低,具有更多的同工型。根据HPLC分析,唾液酸含量也增加了17.7%。综上所述,获得的数据表明,NAC的添加对培养期的延长具有积极的影响,改善了NaBu处理的CHO细胞中IFN-β的产生并增加了唾液酸的唾液酸化。

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