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A Dynamic Metabolic Flux Balance Based Model of Fed-Batch Fermentation of Bordetella Pertussis

机译:基于动态代谢通量平衡的百日咳博德特氏菌补料发酵模型

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摘要

A mathematical model based on a dynamic metabolic flux balance (DMFB) is developed for a process of fed-batch fermentation of Bordetella pertussis. The model is based on the maximization of growth rate at each time interval subject to stoichiometric constraints. The model is calibrated and verified with experimental data obtained in two different bioreactor experimental systems. It was found that the model calibration was mostly sensitive to the consumption or production rates of tyrosine and, for high supplementation rates, to the consumption rate of glutamate. Following this calibration the model correctly predicts biomass and by-products concentrations for different supplementation rates. Comparisons of model predictions to oxygen uptake and carbon emission rates measurements indicate that the TCA cycle is fully functional.
机译:建立了基于动态代谢通量平衡(DMFB)的数学模型,用于百日咳博德特氏菌的分批补料发酵过程。该模型基于受化学计量约束的每个时间间隔的最大增长率。使用在两个不同的生物反应器实验系统中获得的实验数据对模型进行校准和验证。已经发现,模型校准对酪氨酸的消耗或生产率最敏感,而对于高补充率,对谷氨酸的消耗速率最敏感。进行此校准后,模型可以正确预测不同添加速率下的生物量和副产物浓度。模型预测与氧气吸收速率和碳排放速率测量值的比较表明,TCA循环功能全面。

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