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Modeling and Optimization of Hairy Root Growth in Fed-Batch Process

机译:分批补料过程中毛状根生长的建模与优化

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This article proposes a feeding strategy based on a kinetic model to enhance hairy roots growth. A new approach for modeling hairy root growth is used, considering that there is no nutrient limitation thanks to an appropriate feeding, and the intracellular pools are supposed to be always saturated. Thus, the model describes the specific growth rate from extracellular concentration of the major nutrients and nutrient uptakes depend on biomass growth. An optimized feeding strategy was determined thanks to the model to maintain the major nutrient levels at their optimum assuming optimal initial concentrations. The optimal feed rate is computed in open loop using kinetic model prediction or in closed loop using conductivity measurements to estimate biomass growth. Datura innoxia was chosen as the model culture system. Shake flask cultures were used to calibrate the model. Finally, cultures in bioreactor were performed to validate the model and the control laws.
机译:本文提出了一种基于动力学模型的饲喂策略,以增强毛状根的生长。考虑到由于适当的饲喂而没有营养限制,并且使用了一种新的模拟毛状根生长的方法,并且认为细胞内池总是处于饱和状态。因此,该模型从主要营养素的细胞外浓度描述了特定的生长速率,营养素的吸收取决于生物量的增长。该模型确定了最佳的饲喂策略,可将主要营养素水平维持在假定最佳初始浓度的最佳状态。在开环中使用动力学模型预测来计算最佳进料速率,在闭环中使用电导率测量来估计生物量增长来计算最佳进料速率。选择无花曼陀罗作为模型培养系统。摇瓶培养物用于校准模型。最后,在生物反应器中进行培养以验证模型和控制律。

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