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Improving Bioprocess Productivity Using Constraint-Based Models in a Dynamic Optimization Scheme

机译:使用基于约束的模型在动态优化方案中提高生物过程生产力

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摘要

Modulating the expression of target genes is an effective metabolic engineering approach to increase bioprocess productivity. In this work, a bilevel optimization framework is applied for dynamic manipulation of gene expression based on constraint-based models. A dynamic model in the inner problem captures the network dynamics and enables temporal regulation of the metabolic network. Through linearization of nonlinear constraints, this framework is based on linear optimization which saves on computation time especially in a bilevel structure. A case study involving batch fermentation of Escherichia coli for ethanol production is considered to find an optimal manipulation strategy of metabolic networks for maximal productivity.
机译:调节靶基因的表达是一种增加生物过程生产率的有效代谢工程方法。在这项工作中,基于基于约束的模型应用了Bilevel优化框架用于基因表达的动态操纵。内部问题中的动态模型捕获了网络动态,并启用了代谢网络的时间调节。通过非线性约束的线性化,该框架基于线性优化,其尤其是在彼此中的计算时间上节省。涉及乙醇产量的大肠杆菌的分批发酵的案例研究被认为是最大生产率的代谢网络的最佳操纵策略。

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