Invite GmbH, Leverkusen, Germany.
Bayer AG, Leverkusen, Germany.
Biotechnol Bioeng. 2020 Apr;117(4):1024-1036. doi: 10.1002/bit.27267. Epub 2020 Jan 29.
Continuous processing is the future production method for monoclonal antibodies (mAbs). A fully continuous, fully automated downstream process based on disposable equipment was developed and implemented inside the MoBiDiK pilot plant. However, a study evaluating the comparability between batch and continuous processing based on product quality attributes was not conducted before. The work presented fills this gap comparing both process modes experimentally by purifying the same harvest material (side-by-side comparability). Samples were drawn at different time points and positions in the process for batch and continuous mode. Product quality attributes, product-related impurities, as well as process-related impurities were determined. The resulting polished material was processed to drug substance and further evaluated regarding storage stability and degradation behavior. The in-process control data from the continuous process showed the high degree of accuracy in providing relevant process parameters such as pH, conductivity, and protein concentration during the entire process duration. Minor differences between batch and continuous samples are expected as different processing conditions are unavoidable due to the different nature of batch and continuous processing. All tests revealed no significant differences in the intermediates and comparability in the drug substance between the samples of both process modes. The stability study of the final product also showed no differences in the stability profile during storage and forced degradation. Finally, online data analysis is presented as a powerful tool for online-monitoring of chromatography columns during continuous processing.
连续处理是单克隆抗体 (mAbs) 的未来生产方法。在 MoBiDiK 中试工厂内,基于一次性设备开发并实施了一种完全连续、全自动的下游工艺。然而,在此之前,并没有基于产品质量属性对批处理和连续处理之间的可比性进行评估的研究。本工作通过对相同收获物(平行可比性)进行纯化来实验性地比较两种工艺模式,填补了这一空白。在批处理和连续模式下,分别在不同的时间点和过程位置取样。测定了产品质量属性、与产品相关的杂质以及与工艺相关的杂质。所得的精制物料被加工成药物物质,并进一步评估其储存稳定性和降解行为。连续工艺的过程控制数据表明,在整个过程持续时间内,提供相关过程参数(如 pH 值、电导率和蛋白质浓度)的准确度很高。由于批处理和连续处理的性质不同,批处理和连续样品之间预计会存在较小的差异。所有测试均表明,两种工艺模式的样品在中间体和药物物质的可比性方面没有显著差异。最终产品的稳定性研究也表明,在储存和强制降解过程中,稳定性曲线没有差异。最后,展示了在线数据分析作为连续处理过程中在线监测色谱柱的强大工具。