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首页> 外文期刊>Journal of Biotechnology >Efficient MILP formulations for the optimal synthesis of chromatographic protein purification processes
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Efficient MILP formulations for the optimal synthesis of chromatographic protein purification processes

机译:高效的MILP配方可优化色谱蛋白质纯化工艺的合成

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摘要

The use of recombinant proteins has increased greatly in recent years, as well as the techniques used for their purification. The selection of an efficient process to purify proteins is a major bottleneck found when trying to scale up results obtained in the laboratory to a large-scale industrial process. One of the main challenges in the synthesis of downstream purification stages in biotechnological processes is the appropriate selection and sequencing of chromatographic steps. The objective of this work is to develop mixed integer linear programming models for the synthesis of protein purification processes. Models for each chromatographic technique rely on physicochemical data of a protein mixture, which contains the desired product and provide information on its potential purification. Formulations that are based on convex hull representations are proposed to calculate the minimum number of steps from a set of chromatographic techniques that must achieve a specified purity level and alternatively to maximize purity for a given number of steps. The proposed models are tested in several examples with experimental data and present time reductions of up to three orders of magnitude when compared to big-M formulations.
机译:近年来,重组蛋白及其纯化技术的使用已大大增加。当试图将实验室获得的结果扩大到大规模工业过程时,选择纯化蛋白的有效方法是一个主要瓶颈。生物技术过程中下游纯化阶段合成的主要挑战之一是色谱步骤的正确选择和排序。这项工作的目的是开发用于蛋白质纯化过程合成的混合整数线性规划模型。每种色谱技术的模型都依赖于蛋白质混合物的物理化学数据,其中包含所需的产物并提供有关其潜在纯化的信息。提出了基于凸包表示的配方,以从一组色谱技术中计算出最少的步骤数,这些色谱技术必须达到指定的纯度水平,或者对于给定的步骤数,要使纯度最大化。在几个示例中使用实验数据对提出的模型进行了测试,与big-M配方相比,目前最多可将时间减少三个数量级。

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