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基于模型的双塔CaptureSMB工艺优化设计提高了蛋白A亲和捕获中的容量利用率和生产率。

Optimal model-based design of the twin-column CaptureSMB process improves capacity utilization and productivity in protein A affinity capture.

作者信息

Baur Daniel, Angarita Monica, Müller-Späth Thomas, Morbidelli Massimo

机构信息

Department for Chemistry and Applied Biosciences, ETH Zurich, Zurich, Switzerland.

ChromaCon AG, Zurich, Switzerland.

出版信息

Biotechnol J. 2016 Jan;11(1):135-45. doi: 10.1002/biot.201500223. Epub 2015 Dec 18.

Abstract

Multi-column chromatographic processes have recently been developed for protein A affinity chromatography to efficiently capture monoclonal antibodies from cell culture supernatant. In this work, the novel twin-column CaptureSMB process was compared to a batch capture process with dual loading flow rate to identify performance gains. As a case study, the isolation of a monoclonal antibody with the Amsphere JWT-203 protein A resin was investigated. Using model based optimization, both processes were optimized and compared over a wide range of operating conditions. A trade-off between productivity and capacity utilization was found, and the resulting pareto-curves showed that CaptureSMB dominates batch, except at very low productivity values. With a feed titer of 1.2 mg mL(-1) , CaptureSMB could reach a productivity of up to 19.5 mg mL(-1) h(-1) experimentally, while maintaining relatively high capacity utilization of 63.8%. On the other hand, at maximum capacity utilization of 95.5%, a productivity of 10.2 mg mL(-1) h(-1) could be reached. This corresponds to a performance improvement with respect batch operation of about 25% in capacity utilization and 40% in productivity, for given yield and purity. CaptureSMB therefore offers a greatly increased performance over batch capture.

摘要

最近已开发出多柱色谱法用于蛋白A亲和色谱,以从细胞培养上清液中高效捕获单克隆抗体。在这项工作中,将新型双塔捕获模拟移动床(CaptureSMB)工艺与具有双加载流速的分批捕获工艺进行比较,以确定性能提升情况。作为一个案例研究,研究了使用Amsphere JWT - 203蛋白A树脂分离单克隆抗体的情况。使用基于模型的优化方法,在广泛的操作条件下对这两种工艺进行了优化和比较。发现了生产率与容量利用率之间的权衡,所得的帕累托曲线表明,除了在非常低的生产率值下,CaptureSMB工艺优于分批工艺。当进料浓度为1.2 mg mL(-1)时,实验中CaptureSMB工艺可达到高达19.5 mg mL(-1) h(-1)的生产率,同时保持相对较高的容量利用率63.8%。另一方面,在最大容量利用率为95.5%时,生产率可达10.2 mg mL(-1) h(-1)。对于给定的产率和纯度,这对应于相对于分批操作在容量利用率方面提高约25%,在生产率方面提高40%。因此,与分批捕获相比,CaptureSMB工艺的性能有了大幅提升。

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