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整合完整的下游工艺,实现自动化实验室规模的重组蛋白生产。

Integration of a complete downstream process for the automated lab-scale production of a recombinant protein.

机构信息

Department of Chemical Engineering, Lund University, P.O. Box 124, SE-21100 Lund, Sweden.

Swedish Orphan Biovitrum AB, SE-11276 Stockholm, Sweden.

出版信息

J Biotechnol. 2019 Aug 10;301:45-51. doi: 10.1016/j.jbiotec.2019.05.013. Epub 2019 May 27.

DOI:10.1016/j.jbiotec.2019.05.013
PMID:31145936
Abstract

In this work, an automated downstream process for the purification and formulation of a recombinant protein was integrated at lab scale in a single chromatography unit. The purification chain consists of three bind-and-elute chromatography columns, a flow-through membrane chromatography step, and a final ultrafiltration-diafiltration (UFDF) step to concentrate and formulate the sample. An integrated downstream process increases productivity and decreases process time and hold-up volume. In addition, the automation of the process allows reducing the manual work and increases reproducibility. To integrate the downstream steps, all the intermediate tanks are removed, and the eluate of a column is loaded directly onto the next one. This makes it necessary to design the process in order to minimize the column volumes and the process time. A research software called Orbit was used to automate the purification process and implement a UFDF step in the chromatography unit. The whole downstream sequence was successfully implemented at lab scale, getting a pure concentrated and formulated product with a productivity of 1.09 mg mL h, achieving a time reduction from almost two to one working day, while getting a similar yield and purity. Regarding the UFDF operation, the sample was concentrated 10 times, and 97% of the old buffer was exchanged by the formulation buffer with a sequential diafiltration.

摘要

在这项工作中,我们在实验室规模的单个层析单元中整合了一种用于重组蛋白纯化和制剂的自动化下游工艺。该纯化链包括三个结合洗脱层析柱、一个流穿膜层析步骤和最后一个超滤-透析(UFDF)步骤,用于浓缩和制剂样品。集成的下游工艺可以提高生产力,缩短工艺时间并减少保留体积。此外,该过程的自动化可以减少人工工作并提高重现性。为了整合下游步骤,所有中间罐都被移除,并且将一个柱子的洗脱液直接加载到下一个柱子上。这就需要设计工艺,以最小化柱子体积和工艺时间。研究软件 Orbit 用于自动化纯化过程,并在层析单元中实现 UFDF 步骤。整个下游序列在实验室规模上成功实施,得到了一种纯度高、浓度高且制剂化的产品,生产力为 1.09 mg/mL/h,将工作时间从近两天缩短到一天,同时获得了相似的产量和纯度。关于 UFDF 操作,样品浓缩了 10 倍,用制剂缓冲液进行了顺序透析,将 97%的旧缓冲液交换为制剂缓冲液。

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