Löfgren Anton, Gomis-Fons Joaquín, Andersson Niklas, Nilsson Bernt, Berghard Lotta, Lagerquist Hägglund Christine
Department of Chemical Engineering, Lund University, Lund, Sweden.
Royal Institute of Technology, Competence Centre for Advanced BioProduction by Continuous Processing, Stockholm, Sweden.
Biotechnol Bioeng. 2021 Apr;118(4):1664-1676. doi: 10.1002/bit.27681. Epub 2021 Feb 4.
Integrated continuous downstream processes with process analytical technology offer a promising opportunity to reduce production costs and increase process flexibility and adaptability. In this case study, an integrated continuous process was used to purify a recombinant protein on laboratory scale in a two-system setup that can be used as a general downstream setup offering multiproduct and multipurpose manufacturing capabilities. The process consisted of continuous solvent/detergent virus inactivation followed by periodic countercurrent chromatography in the capture step, and a final chromatographic polishing step. A real-time controller was implemented to ensure stable operation by adapting the downstream process to external changes. A concentration disturbance was introduced to test the controller. After the disturbance was applied, the product output recovered within 6 h, showing the effectiveness of the controller. In a comparison of the process with and without the controller, the product output per cycle increased by 27%, the resin utilization increased from 71.4% to 87.9%, and the specific buffer consumption was decreased by 21% with the controller, while maintaining a similar yield and purity as in the process without the disturbance. In addition, the integrated continuous process outperformed the batch process, increasing the productivity by 95% and the yield by 28%.
集成连续下游工艺与过程分析技术为降低生产成本、提高工艺灵活性和适应性提供了一个很有前景的机会。在本案例研究中,采用了一种集成连续工艺,在实验室规模上,以双系统设置纯化一种重组蛋白,该设置可用作提供多产品和多用途制造能力的通用下游设置。该工艺包括在捕获步骤中连续进行溶剂/去污剂病毒灭活,随后进行周期性逆流色谱,以及最后的色谱精制步骤。实施了一个实时控制器,通过使下游工艺适应外部变化来确保稳定运行。引入了浓度干扰来测试该控制器。施加干扰后,产品输出在6小时内恢复,表明该控制器有效。在有控制器和无控制器的工艺比较中,使用控制器时,每个循环的产品输出增加了27%,树脂利用率从71.4%提高到87.9%,特定缓冲液消耗降低了21%,同时保持了与无干扰工艺相似的产率和纯度。此外,集成连续工艺优于分批工艺,生产率提高了95%,产率提高了28%。