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Oxygen Transfer in a Laboratory Stirred Tank Bioreactor During Mammalian Cell Culture Cultivation

机译:哺乳动物细胞培养过程中实验室搅拌槽生物反应器中的氧转移

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The influence of power consumption on the volumetric mass transfer coefficient was studied in a 5 liter stirred tank bioreactor during cultivation of a recombinant Chinese Hamster Ovary (CHO) cell line, which requires low aeration and mixing intensity. Under these conditions and at high cell concentrations, oxygen mass transfer coefficient and consequently volumetric oxygen mass transfer rate was not sufficient for the oxygen requirements. This problem was successfully solved by introducing pure oxygen into the bioreactor and the oxygen mass balance was studied. For that purpose, respiration rate as a function of cell concentration, as well as volumetric oxygen mass transfer rate at different operating conditions were measured. Graphical presentation of the results show the process control possibilities and the role of mixing intensity necessary to ensure that there is sufficient oxygen supply for a given cell concentration and respiration rate.
机译:在培养需要低通气和混合强度的重组中国仓鼠卵巢(CHO)细胞系的过程中,在5升搅拌釜生物反应器中研究了功率消耗对体积传质系数的影响。在这些条件下以及高细胞浓度下,氧气的传质系数以及因此的体积氧气传质速率不足以满足氧气需求。通过将纯氧引入生物反应器成功解决了该问题,并研究了氧气质量平衡。为此,测量了呼吸速率与细胞浓度的关系,以及在不同操作条件下的体积氧传质速率。结果的图形表示显示了过程控制的可能性以及混合强度的作用,以确保对于给定的细胞浓度和呼吸速率有足够的氧气供应。

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