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Reduction of medium consumption in perfusion mammalian cell cultures using a perfusion rate equivalent concentrated nutrient feed

机译:使用灌注速率等同的浓缩营养饲料减少灌注哺乳动物细胞培养中的中等消耗

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Media preparation for perfusion cell culture processes contributes significantly to operational costs and the footprint of continuous operations for therapeutic protein manufacturing. In this study, definitions are given for the use of a perfusion equivalent nutrient feed stream which, when used in combination with basal perfusion medium, supplements the culture with targeted compounds and increases the medium depth. Definitions to compare medium and feed depth are given in this article. Using a concentrated nutrient feed, a 1.8-fold medium consumption (MC) decrease and a 1.67-fold increase in volumetric productivity (PR) were achieved compared to the initial condition. Later, this strategy was used to push cell densities above 100 x 10(6)cells/ml while using a perfusion rate below 2 RV/day. In this example, MC was also decreased 1.8-fold compared to the initial condition, but due to the higher cell density, PR was increased 3.1-fold and to an average PR value of 1.36 g L-1 day(-1)during a short stable phase, and versus 0.46 g L-1 day(-1)in the initial condition. Overall, the performance improvements were aligned with the given definitions. This multiple feeding strategy can be applied to gain some flexibility during process development and also in a manufacturing set-up to enable better control on nutrient addition.
机译:灌注细胞培养方法的培养基制剂促进了运营成本和治疗蛋白质制造的连续作用的占地面积。在该研究中,给出了使用灌注等效营养进料流的定义,当与基底灌注介质结合使用时,用靶向化合物补充培养物并增加培养基深度。在本文中给出了比较介质和饲料深度的定义。使用浓缩的营养饲料,与初始条件相比,将1.8倍培养基的消耗(MC)降低,并且体积生产率的增加(PR)增加1.67倍。后来,这种策略用于将细胞密度推高于100×10(6)个细胞/ mL的细胞密度,同时使用低于2RV /天的灌注速率。在该示例中,与初始条件相比,MC也降低1.8倍,但由于较高的细胞密度,PR增加3.1倍,并且在a期间增加了1.36g L-1天(-1)的平均PR值。短稳定相,并且在初始条件下为0.46克-1天(-1)。总的来说,性能改进与给定的定义对齐。这种多馈策略可以应用于在过程开发期间获得一些灵活性,也可以在制造设置中进行,以便能够更好地控制营养加法。

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