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在超滤透析滤过期间使用中红外光谱法在线监测蛋白质浓度。

In-line monitoring of protein concentration with MIR spectroscopy during UFDF.

作者信息

Milewska Adrianna, Baekelandt Géraldine, Boutaieb Sarra, Mozin Vitalii, Falconbridge Andrew

机构信息

Alvotech Reykjavík Iceland.

IRUBIS GmbH München Germany.

出版信息

Eng Life Sci. 2022 Dec 23;23(2):e2200050. doi: 10.1002/elsc.202200050. eCollection 2023 Feb.

Abstract

Rapid increase of product titers in upstream processes has presented challenges for downstream processing, where purification costs increase linearly with the increase of the product yield. Hence, innovative solutions are becoming increasingly popular. Process Analytical Technology (PAT) tools, such as spectroscopic techniques, are on the rise due to their capacity to provide real-time, precise analytics. This ensures consistent product quality and increased process understanding, as well as process control. Mid-infrared spectroscopy (MIR) has emerged as a highly promising technique within recent years, owing to its ability to monitor several critical process parameters at the same time and unchallenging spectral analysis and data interpretation. For in-line monitoring, Attenuated Total Reflectance-Fourier Transform Infrared Spectroscopy (ATR-FTIR) is a method of choice, as it enables reliable measurements in a liquid environment, even though water absorption bands are present in the region of interest. Here, we present MIR spectroscopy as a monitoring tool of critical process parameters in ultrafiltration/diafiltration (UFDF). MIR spectrometer was integrated in the UFDF process in an in-line fashion through a single-use flow cell containing a single bounce silicon ATR crystal. The results indicate that the one-point calibration algorithm applied to the MIR spectra, predicts highly accurate protein concentrations, as compared with validated offline analytical methods.

摘要

上游工艺中产品滴度的快速提高给下游加工带来了挑战,因为纯化成本会随着产品产量的增加而线性上升。因此,创新解决方案越来越受欢迎。过程分析技术(PAT)工具,如光谱技术,因其能够提供实时、精确的分析而日益兴起。这确保了产品质量的一致性,增强了对工艺的理解以及工艺控制。近年来,中红外光谱(MIR)已成为一项极具前景的技术,因为它能够同时监测多个关键工艺参数,并且光谱分析和数据解释相对简便。对于在线监测,衰减全反射傅里叶变换红外光谱(ATR-FTIR)是一种首选方法,因为即使在感兴趣的区域存在水吸收带,它也能在液体环境中进行可靠测量。在此,我们展示了中红外光谱作为超滤/渗滤(UFDF)中关键工艺参数监测工具的应用。通过一个包含单次反射硅ATR晶体的一次性流通池,将中红外光谱仪以在线方式集成到UFDF工艺中。结果表明,与经过验证的离线分析方法相比,应用于中红外光谱的单点校准算法能够高度准确地预测蛋白质浓度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b7cd/9893749/a4b9d1eadf66/ELSC-23-e2200050-g001.jpg

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