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pH Condition in temperature shift cultivation enhances cell longevity and specific hMab productivity in CHO culture

机译:温度变化培养中的pH条件可提高CHO培养中的细胞寿命和特定的hMab生产率

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摘要

Controlling cell proliferation during cell culturing is an effective way to improve the production yield in mammalian cell culture. We examined the effect of temperature shifts (TS) under pH control conditions in Chinese hamster ovary cells. When we shifted the culture temperature from 37 °C to 31 °C before a stationary phase at pH 6.8 (TS/pH 6.8), cell viability remained high, and the final human monoclonal antibody (hMab) concentration increased to 2.3 times that in the culture remaining at 37 °C. However, there were no significant effects on the cell viability or production yield with the same TS at pH 7.0 (TS/pH 7.0). The average specific hMab productivity and mRNA level of TS/pH 7.0 were the same as that of TS/pH 6.8. The control of cell growth by the TS or the addition of rapamycin was effective in the maintenance of cell viability, but there was no significant increase of the average specific hMab productivity in the culture where cell proliferation was controlled with rapamycin. The hMab mRNA concentration decreased to 55%–65% at a 37 °C culture with the addition of actinomycin D. In contrast, actinomycin D did not affect the mRNA level in the TS culture. This result suggested that the increase in the mRNA level in the TS condition was caused by an increase in mRNA stability. In this study, we show that TS can produce two unrelated effects: a prolongation of cell longevity and an improvement in mRNA stability.
机译:在细胞培养过程中控制细胞增殖是提高哺乳动物细胞培养产量的有效途径。我们检查了中国仓鼠卵巢细胞在pH控制条件下温度变化(TS)的影响。当我们将培养温度从37°C改变到31°C,然后在pH 6.8(TS / pH 6.8)固定相之前,细胞活力仍然很高,最终人类单克隆抗体(hMab)的浓度增加到了2.3倍。培养物保持在37°C但是,在pH 7.0(TS / pH 7.0)相同的TS下,对细胞活力或产量没有显着影响。 TS / pH 7.0的平均hMab生产率和mRNA水平与TS / pH 6.8相同。通过TS或添加雷帕霉素来控制细胞生长在维持细胞活力方面是有效的,但是在用雷帕霉素控制细胞增殖的培养物中,平均比hMab生产力没有显着提高。加入放线菌素D后,hMab mRNA浓度在37°C培养下降至55%–65%。相反,放线菌素D不会影响TS培养物中的mRNA水平。该结果表明在TS条件下mRNA水平的增加是由mRNA稳定性的增加引起的。在这项研究中,我们表明TS可以产生两个不相关的作用:延长细胞寿命和提高mRNA稳定性。

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