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Development characterization and application of a 2‐Compartment system to investigate the impact of pH inhomogeneities in large‐scale CHO‐based processes

机译:2室系统的开发表征和应用以研究基于大规模Cho的pH值不均匀性的影响

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摘要

Large‐scale bioreactors for the production of monoclonal antibodies reach volumes of up to 25 000 L. With increasing bioreactor size, mixing is however affected negatively, resulting in the formation of gradients throughout the reactor. These gradients can adversely affect process performance at large scale. Since mammalian cells are sensitive to changes in pH, this study investigated the effects of pH gradients on process performance. A 2‐Compartment System was established for this purpose to expose only a fraction of the cell population to pH excursions and thereby mimicking a large‐scale bioreactor. Cells were exposed to repeated pH amplitudes of 0.4 units (pH 7.3), which resulted in decreased viable cell counts, as well as the inhibition of the lactate metabolic shift. These effects were furthermore accompanied by increased absolute lactate levels. Continuous assessment of molecular attributes of the expressed target protein revealed that subunit assembly or ‐glycosylation patterns were only slightly influenced by the pH excursions. The exposure of more cells to the same pH amplitudes further impaired process performance, indicating this is an important factor, which influences the impact of pH inhomogeneity. This knowledge can aid in the design of pH control strategies to minimize the effects of pH inhomogeneity in large‐scale bioreactors.
机译:用于生产单克隆抗体的大规模生物反应器达到高达2500万磅的体积。随着生物反应器尺寸的增加,混合呈负面影响,导致在整个反应器中形成梯度。这些渐变可能会在大规模上产生不利影响过程性能。由于哺乳动物细胞对pH的变化敏感,因此本研究研究了pH梯度对过程性能的影响。为此目的建立了一个2室系统,仅将细胞群的一小部分暴露给pH偏移,从而模拟大规模的生物反应器。细胞暴露于0.4单位(pH7.3)的重复的pH振幅,导致可减少的活细胞计数,以及抑制乳酸乳酸代谢移位。此外,这些效果还伴随着增加的绝对乳酸水平。连续评估表达靶蛋白的分子属性显示,亚基组装或糖基化模式仅受到pH偏移的略微影响。更多细胞暴露于相同的pH振幅进一步受损的过程性能,表明这是一种重要因素,这影响了pH不均匀性的影响。这种知识可以帮助设计pH控制策略,以最小化大规模生物反应器中pH不均匀性的影响。

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