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Optimal Operation of Hybridoma Cell Fed-Batch Cultures Using the Overflow Metabolism Model: Numerical and Analytical Approach

机译:利用溢流新陈代谢模型的杂交瘤细胞补料培养物的最佳运行:数值和分析方法

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The maximization of biomass productivity in fed-batch cultures of hybridoma cells is analyzed based on the overflow metabolism model. Due to overflow metabolism, often attributed to limited oxygen capacity, lactate and ammonia are formed when the substrate concentrations (glucose and glutamine) are above a critical value, which results in a decrease in biomass productivity. Optimal feeding rate, on the one hand, for a single feed stream containing both glucose and glutamine and, on the other hand, for two separate feed streams of glucose and glutamine are determined using a Nelder-Mead simplex optimization algorithm. The optimal multi exponential feed rate trajectory improves the biomass productivity by 10% as compared to the optimal single exponential feed rate. Moreover, this result is validated by the one obtained with the analytical approach in which glucose and glutamine are fed to the culture such as to control the hybridoma cells at the critical metabolism state, which allows maximizing the biomass productivity.
机译:在杂交瘤细胞的补料分批培养物中的生物质生产力的最大化分析基于所述溢流代谢模型。由于溢出代谢,通常归因于有限容量的氧气,乳酸盐和氨时的底物浓度(葡萄糖和谷氨酰胺)是高于临界值,这导致在生物质生产力的降低而形成。最佳的进料速率,在一方面,对于包含葡萄糖和谷氨酰胺和,在另一方面,对于两个单独的进料的单一进料流的葡萄糖和谷氨酰胺的流使用的是内尔德-Mead单纯优化算法来确定。最优多指数进料速率提高轨迹由10%的生物质生产力相比最佳单指数进料速率为。而且,该结果是通过与所述的分析方法,其中葡萄糖和谷氨酰胺被馈送到培养诸如控制杂交瘤细胞在临界状态的代谢,这允许最大化生物质生产力获得的一个验证。

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