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Towards robust cell culture processes — Unraveling the impact of media preparation by spectroscopic online monitoring

机译:迈向健壮的细胞培养过程-通过光谱在线监测揭示培养基制备的影响

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摘要

Biopharmaceutical manufacturing processes can be affected by variability in cell culture media, e.g. caused by raw material impurities. Although efforts have been made in industry and academia to characterize cell culture media and raw materials with advanced analytics, the process of industrial cell culture media preparation itself has not been reported so far. Within this publication, we first compare mid‐infrared and two‐dimensional fluorescence spectroscopy with respect to their suitability as online monitoring tools during cell culture media preparation, followed by a thorough assessment of the impact of preparation parameters on media quality. Through the application of spectroscopic methods, we can show that media variability and its corresponding root cause can be detected online during the preparation process. This methodology is a powerful tool to avoid batch failure and is a valuable technology for media troubleshooting activities. Moreover, in a design of experiments approach, including additional liquid chromatography–mass spectrometry analytics, it is shown that variable preparation parameters such as temperature, power input and preparation time can have a strong impact on the physico‐chemical composition of the media. The effect on cell culture process performance and product quality in subsequent fed‐batch processes was also investigated. The presented results reveal the need for online spectroscopic methods during the preparation process and show that media variability can already be introduced by variation in media preparation parameters, with a potential impact on scale‐up to a commercial manufacturing process.
机译:生物制药生产过程可能会受到细胞培养基(例如由原料杂质引起。尽管工业界和学术界已经为通过先进的分析方法表征细胞培养基和原料做出了努力,但迄今为止尚未报道工业细胞培养基的制备过程。在本出版物中,我们首先比较中红外和二维荧光光谱法在细胞培养基制备过程中作为在线监测工具的适用性,然后全面评估制备参数对培养基质量的影响。通过光谱方法的应用,我们可以证明在制备过程中可以在线检测培养基的变异性及其相应的根本原因。此方法是避免批处理失败的强大工具,并且是进行媒体故障排除活动的宝贵技术。此外,在实验方法的设计中,包括附加的液相色谱-质谱分析,结果表明,可变的制备参数(例如温度,功率输入和制备时间)可能对介质的理化组成有很大影响。还研究了后续补料分批处理对细胞培养过程性能和产品质量的影响。提出的结果表明在制备过程中需要使用在线光谱方法,并表明可以通过改变培养基制备参数来引入培养基可变性,这可能会扩大到商业化生产过程。

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