Andersson Niklas, Löfgren Anton, Olofsson Marianne, Sellberg Anton, Nilsson Bernt, Tiainen Peter
Department of Chemical Engineering, Lund University, P.O. Box 124, SE, 211 00, Lund, Sweden.
Global Research, Novo Nordisk A/S, Novo Allé, DK, 2880, Bagsvaerd, Denmark.
Biotechnol Prog. 2017 Jul;33(4):923-930. doi: 10.1002/btpr.2434. Epub 2017 Feb 3.
To increase the productivity in biopharmaceutical production, a natural step is to introduce integrated continuous biomanufacturing which leads to fewer buffer and storage tanks, smaller sizes of integrated unit operations, and full automation of the operation. The main contribution of this work is to illustrate a methodology for design and control of a downstream process based on integrated column sequences. For small scale production, for example, pre-clinical studies, integrated column sequences can be implemented on a single chromatography system. This makes for a very efficient drug development platform. The proposed methodology is composed of four steps and is governed by a set of tools, that is presented, that makes the transition from batch separations to a complete integrated separation sequence as easy as possible. This methodology, its associated tools and the physical implementation is presented and illustrated on a case study where the target protein is separated from impurities through an integrated four column sequence. This article shows that the design and control of an integrated column sequence was successfully implemented for a tertiary protein separation problem. © 2017 American Institute of Chemical Engineers Biotechnol. Prog., 33:923-930, 2017.
为提高生物制药生产的效率,自然而然的一步是引入集成连续生物制造,这会减少缓冲罐和储存罐的数量,缩小集成单元操作的规模,并实现操作的完全自动化。这项工作的主要贡献在于阐述一种基于集成柱序列的下游工艺设计与控制方法。例如,对于小规模生产,即临床前研究,集成柱序列可在单个色谱系统上实现。这构成了一个非常高效的药物开发平台。所提出的方法由四个步骤组成,并由一组工具来指导,这些工具使得从分批分离过渡到完整的集成分离序列尽可能容易。本文通过一个案例研究展示并说明了该方法、其相关工具及物理实现过程,在该案例中,目标蛋白通过一个集成四柱序列与杂质分离。本文表明,针对三级蛋白质分离问题,集成柱序列的设计与控制已成功实现。© 2017美国化学工程师学会 生物技术进展,33:923 - 930,2017年。