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Application of Raman spectroscopy in monoclonal antibody producing continuous systems for downstream process intensification

机译:拉曼光谱法在单克隆抗体生产下游工艺集约化的连续系统中的应用

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摘要

Monoclonal antibodies (mAbs) are biopharmaceuticals produced by mammalian cell lines in bioreactors at a variety of scales. Cell engineering, media optimization, process monitoring, and control strategies for in vitro production have become crucial subjects to meet increasing demand for these high value pharmaceuticals. Raman Spectroscopy has gained great attention in the pharmaceutical industry for process monitoring and control to maintain quality assurance. For the first time, this article demonstrated the possibility of subclass independent quantitative mAb prediction by Raman spectroscopy in real time. The developed model estimated the concentrations of different mAb isotypes with average prediction errors of 0.2 (g/L) over the course of cell culture. In situ Raman spectroscopy combined with chemometric methods showed to be a useful predictive tool for monitoring of real time mAb concentrations in a permeate stream without sample removal. Raman spectroscopy can, therefore, be considered as a reliable process analytical technology tool for process monitor, control, and intensification of downstream continuous manufacturing. The presented results provide useful information for pharmaceutical industries to choose the most appropriate spectroscopic technology for their continuous processes.
机译:单克隆抗体(mAb)是在各种鳞片中的生物反应器中的哺乳动物细胞系产生的生物制药。用于体外生产的细胞工程,媒体优化,过程监测和控制策略已成为关键的对象,以满足对这些高价值药物的日益增长的需求。拉曼光谱在制药行业中受到很大的关注,以进行过程监控和控制,以保持质量保证。本文首次证明了实时拉曼光谱对亚类独立定量MAB预测的可能性。在细胞培养过程中,开发模型估计不同MAB同种样的浓度为0.2(g / l)的平均预测误差。原位拉曼光谱与化学计量方法相结合,表明是用于监测渗透物流中实时MAB浓度的有用的预测工具,而无需样品去除。因此,拉曼光谱可以被认为是用于过程监测,控制和下游连续制造的可靠工艺分析技术工具。所呈现的结果为制药行业提供了用于选择最合适的光谱技术的有用信息。

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