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基于模型的高通量过程开发用于色谱乳清蛋白分离。

Model-based high-throughput process development for chromatographic whey proteins separation.

机构信息

Department of Biotechnology, Delft University of Technology, Delft, The Netherlands.

出版信息

Biotechnol J. 2012 Oct;7(10):1221-32. doi: 10.1002/biot.201200191. Epub 2012 Sep 5.

Abstract

In this study, an integrated approach involving the combined use of high-throughput screening (HTS) and column modeling during process development was applied to an industrial case involving the evaluation of four anion-exchange chromatography (AEX) resins and four hydrophobic interaction chromatography (HIC) resins for the separation of whey proteins having close pIs. From the HTS data, one resin of each type was selected (Capto Q and Octyl Sepharose 4 FF). Next, batch uptake experiments were performed to determine the adsorption isotherms of the major whey proteins on the selected resins, followed by isotherm parameters regression. Using the obtained isotherm parameters, the candidate chromatographic operations were modeled and experimentally validated. Finally, these were model-optimized and evaluated based on their optimized performances. In this example, Capto Q performed much better than Octyl Sepharose 4 FF in terms of column capacity, loading, throughput and productivity; hence, Capto Q was selected as the resin of choice for whey proteins separation. This operation was further scaled up from the lab scale (1 mL) to a preparative scale (35 L), with reproducible column elution profile. By this approach, a much wider space of operating variables could be investigated, thereby increasing the chances of finding the ideal operating conditions while keeping experimentation to the minimum.

摘要

在这项研究中,采用了一种综合方法,将高通量筛选(HTS)与过程开发过程中的柱模型相结合,应用于一个工业案例,评估了四种阴离子交换色谱(AEX)树脂和四种疏水相互作用色谱(HIC)树脂,用于分离等电点相近的乳清蛋白。从 HTS 数据中,选择了每种类型的一种树脂(Capto Q 和辛基 Sepharose 4 FF)。接下来,进行批量吸附实验,以确定主要乳清蛋白在选定树脂上的吸附等温线,然后进行等温线参数回归。利用获得的等温线参数,对候选色谱操作进行建模和实验验证。最后,根据优化性能对其进行模型优化和评估。在这个例子中,Capto Q 在柱容量、负载量、处理量和产率方面都比辛基 Sepharose 4 FF 表现得更好;因此,Capto Q 被选为乳清蛋白分离的首选树脂。该操作从实验室规模(1 毫升)进一步放大到制备规模(35 升),具有可重复的柱洗脱曲线。通过这种方法,可以更广泛地研究操作变量的空间,从而增加找到理想操作条件的机会,同时将实验保持在最低限度。

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