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The Less the Better: How Suppressed Base Addition Boosts Production of Monoclonal Antibodies With Chinese Hamster Ovary Cells

机译:越少越好:抑制碱基添加如何促进中国仓鼠卵巢细胞单克隆抗体的产生

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摘要

Biopharmaceutical production processes strive for the optimization of economic efficiency. Among others, the maximization of volumetric productivity is a key criterion. Typical parameters such as partial pressure of CO2 (pCO2) and pH are known to influence the performance although reasons are not yet fully elucidated. In this study the effects of pCO2 and pH shifts on the phenotypic performance were linked to metabolic and energetic changes. Short peak performance of qmAb (23 pg/cell/day) was achieved by early pCO2 shifts up to 200 mbar but followed by declining intracellular ATP levels to 2.5 fmol/cell and 80% increase of qLac. On the contrary, steadily rising qmAb could be installed by slight pH down-shifts ensuring constant cell specific ATP production (qATP) of 27 pmol/cell/day and high intracellular ATP levels of about 4 fmol/cell. As a result, maximum productivity was achieved combining highest qmAb (20 pg/cell/day) with maximum cell density and no lactate formation. Our results indicate that the energy availability in form of intracellular ATP is crucial for maintaining antibody synthesis and reacts sensitive to pCO2 and pH-process parameters typically responsible for inhomogeneities after scaling up.
机译:生物制药生产过程致力于经济效益的优化。其中,最大的生产率是关键标准。尽管原因尚未完全阐明,但已知典型参数(例如CO2的分压(pCO2)和pH)会影响性能。在这项研究中,pCO2和pH值变化对表型性能的影响与代谢和能量变化有关。 qmAb的短峰性能(23 pg / cell / day)是通过早期的pCO2转移至200 mbar来实现的,但随后细胞内ATP的水平下降至2.5 fmol / cell,qLac增加了8​​0%。相反,可以通过轻微的pH下移来安装稳定上升的qmAb,以确保恒定的细胞特异性ATP产量(qATP)为27 pmol /细胞/天,以及较高的细胞内ATP水平约4 fmol /细胞。结果,结合了最高的qmAb(20 pg /细胞/天)和最大的细胞密度,并且没有乳酸形成,实现了最高的生产率。我们的结果表明,细胞内ATP形式的能量可用性对于维持抗体合成至关重要,并且在放大后对通常引起不均一性的pCO2和pH过程参数敏感。

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