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pH, pCO(2), and temperature effect on R-adenovirus production

机译:pH,pCO(2)和温度对R-腺病毒生产的影响

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The effects of pH, carbon dioxide vapor pressure, pCO(2), and temperature on El and E3 deleted recombinant adenovirus vector (rAV) production with HEK293S cells have been studied in the ranges of pH = 6.7-7.7, pCO(2) = 0.05-0.20 atm, and T = 32-39 degreesC, respectively. The experiments were performed in four 500-mL bioreactors in parallel, which make possible the reduction of inter-run variability. Cell concentration and viability, relative oxygen uptake rate (OUR), fluorescence, and viral titer were measured. It was found that, although pH and pCO(2) did not affect significantly cell viability in the range studied, they had an important effect on virus titer. pCO(2) allowed the maximum production of rAV at 0.05 atm, and pH showed a very sharp optimum at 7.2. Temperature had an effect on both cell metabolism and virus titer. Low temperature prolonged cell viability and high OUR. Most of all, a 3-fold increase in virus yield was found at 35degreesC compared to that at 37degreesC, while 32degreesC was not as beneficial (1.5-fold increase). This finding could have an important impact on large-scale production. This phenomenon was modeled using a simple 3-parameter synthesis-decay model. This model shows how the optimum gain in virus production at 35degreesC is due to a balance between the production and decay processes at that temperature.
机译:研究了pH,二氧化碳蒸气压,pCO(2)和温度对用HEK293S细胞生产的E1和E3缺失重组腺病毒载体(rAV)生产的影响,pH范围为6.7-7.7,pCO(2)=分别为0.05-0.20大气压和T = 32-39摄氏度。在四个500-mL生物反应器中并行进行实验,这有可能减少运行间的差异。测量细胞浓度和活力,相对吸氧率(OUR),荧光和病毒滴度。已发现,尽管pH和pCO(2)在所研究的范围内并未显着影响细胞活力,但它们对病毒滴度具有重要影响。 pCO(2)可以在0.05个大气压下最大程度地产生rAV,pH在7.2下显示出非常尖锐的最佳值。温度对细胞代谢和病毒滴度都有影响。低温延长细胞活力,提高OUR。最重要的是,与37摄氏度相比,35摄氏度的病毒产量增加了3倍,而32摄氏度的病毒产量却没有增加(1.5倍)。这一发现可能会对大规模生产产生重要影响。使用简单的三参数合成衰减模型对该现象进行了建模。该模型显示了在35摄氏度下病毒生产的最佳增益是如何在该温度下的生产过程与衰变过程之间取得平衡的。

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