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Process Analytical Technology Implementation for Peptide Manufacturing: Cleavage Reaction of Recombinant Lethal Toxin Neutralizing Factor Concatemer as a Case Study

机译:肽制造方法分析技术实施:重组致死毒素中和因子联系器的切割反应作为案例研究

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摘要

The alpha-chymotrypsin-based cleavage reaction is necessary for manufacturing peptides using rDNA technology with tandem repeats. The current work showcases application of process analytical technology (PAT) tools for monitoring and control of this reaction, using recombinant Lethal Toxin Neutralizing Factor (rLTNF) as a case study. At-line Fourier Transform infrared spectroscopy (ATR-FTIR) combined with attenuated total internal reflectance sampling accessory was exploited to monitor the reaction. PLS spectral calibration models were created for real-time quantification of concentrations of rLTNF concatemer and urea in the reaction mixture. An end-toend PAT monitoring and control strategy was developed to address potential deviations and ensure that targets for yield, purity, and impurity profile are met for each batch. The impact of various deviations of process parameters outside the operating space, such as deviations in the reaction buffer, concentration of concatemer in the IBs, enzyme loading relative to protein concentration, and reaction time with late quenching were investigated. Variation in impurity profile over time in the case of late reaction quenching was determined through HPLC and mass spectrometry. It has been demonstrated how process signatures from the PAT tools across various batches and campaigns can be analyzed to facilitate real-time process monitoring and control.
机译:基于α-Chymotrypsin的切割反应对于使用RDNA技术进行串联重复的肽制造肽是必需的。目前的工作展示了工艺分析技术(PAT)用于监测和控制该反应的工具的应用,使用重组致死的毒素中和因子(RLTNF)作为案例研究。在线傅里叶变换红外光谱(ATR-FTIR)与减振的全内反射率采样配件合并,以监测反应。采用PLS光​​谱校准模型,用于实时定量反应混合物中RLTNF联系机和尿素的浓度。开发了一个最终倾向于PAT监测和控制策略,以解决潜在的偏差,并确保每批满足均产生屈服,纯度和杂质分布的目标。研究过程参数在操作空间外的各种偏差的影响,例如反应缓冲液中的偏差,IBS中的联系人的浓度,相对于蛋白质浓度的酶负载,以及具有晚期猝灭的反应时间。通过HPLC和质谱法测定在晚期反应猝灭的情况下杂质分布随时间的变化。已经证明,可以分析各种批次和广告系列的PAT工具的过程签名,以便于实时过程监控和控制。

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