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首页> 外文期刊>Biotechnology and Bioengineering >Rapid whole monoclonal antibody analysis by mass spectrometry: An ultra scale-down study of the effect of harvesting by centrifugation on the post-translational modification profile
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Rapid whole monoclonal antibody analysis by mass spectrometry: An ultra scale-down study of the effect of harvesting by centrifugation on the post-translational modification profile

机译:通过质谱快速分析整个单克隆抗体:离心收获对翻译后修饰谱的影响的超大规模研究

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With the trend towards the generation and production of increasing numbers of complex biopharmaceutical (protein based) products, there is an increased need and requirement to characterize both the product and production process in terms of robustness and reproducibility. This is of particular importance for products from mammalian cell culture which have large molecular structures and more often than not complex post-translational modifications (PTMs) that can impact the efficacy, stability and ultimately the safety of the final product. It is therefore vital to understand how the operating conditions of a bioprocess affect the distribution and make up of these PTMs to ensure a consistent quality and activity in the final product. Here we have characterized a typical bioprocess and determined (a) how the time of harvest from a mammalian cell culture and, (b) through the use of an ultra scale-down mimic how the nature of the primary recovery stages, affect the distribution and make up of the PTMs observed on a recombinant IgG4 monoclonal antibody. In particular we describe the use of rapid whole antibody analysis by mass spectrometry to analyze simultaneously the changes that occur to the cleavage of heavy chain C-terminal lysine residues and the glycosylation pattern, as well as the presence of HL dimers. The time of harvest was found to have a large impact upon the range of glycosylation patterns observed, but not upon C-terminal lysine cleavage. The culture age had a profound impact on the ratio of different glycan moieties found on antibody molecules. The proportion of short glycans increased (e.g., (G0F)_2 20-35%), with an associated decrease in the proportion of long glycans with culture age (e.g., (G2F)_2 7-4%, and G1F/G2F from 15.2% to 7.8%). Ultra scale-down mimics showed that subsequent processing of these cultures did not change the post-translational modifications investigated, but did increase the proportion of half antibodies present in the process stream. The combination of ultra scale-down methodology and whole antibody analysis by mass spectrometry has demonstrated that the effects of processing on the detailed molecular structure of a monoclonal antibody can be rapidly determined early in the development process. In this study we have demonstrated this analysis to be applicable to critical process design decisions (e.g., time of harvest) in terms of achieving a desired molecular structure, but this approach could also be applied as a selection criterion as to the suitability of a platform process for the preparation of a new drug candidate. Also the methodology provides means for bioprocess engineers to predict at the discovery phase how a bioprocess will impact upon the quality of the final product.
机译:随着生成和生产越来越多的复杂生物药物(基于蛋白质)产品的趋势,越来越需要并需要在鲁棒性和可再现性方面表征产品和生产过程。对于来自哺乳动物细胞培养物的产品而言,这尤其重要,该产品具有大的分子结构,而且通常不是复杂的翻译后修饰(PTM),这会影响最终产品的功效,稳定性和最终的安全性。因此,至关重要的是要了解生物过程的操作条件如何影响这些PTM的分布和组成,以确保最终产品的质量和活性始终如一。在这里,我们已经描述了典型的生物过程,并确定了(a)从哺乳动物细胞培养物中收获的时间,以及(b)通过使用超比例缩小模拟初级恢复阶段的性质如何影响分布和由重组IgG4单克隆抗体上观察到的PTM组成。特别地,我们描述了通过质谱快速全抗体分析来同时分析重链C端赖氨酸残基裂解和糖基化模式发生变化以及HL二聚体的存在。发现收获时间对观察到的糖基化模式的范围有很大的影响,但对C端赖氨酸的裂解没有很大的影响。培养年龄对在抗体分子上发现的不同聚糖部分的比例具有深远的影响。短聚糖的比例增加(例如,(G0F)_2 20-35%),长聚糖的比例随培养年龄而降低(例如,(G2F)_2 7-4%,G1F / G2F从15.2开始) %至7.8%)。超比例缩小的模拟物显示,这些培养物的后续加工过程不会改变所研究的翻译后修饰,但会增加工艺流中存在的半抗体的比例。将超比例缩小方法与质谱分析整个抗体相结合,已证明可以在开发过程的早期快速确定加工过程对单克隆抗体详细分子结构的影响。在这项研究中,我们已经证明该分析可用于实现所需分子结构的关键过程设计决策(例如收获时间),但是该方法也可以用作平台适用性的选择标准新候选药物的制备过程。该方法还为生物过程工程师提供了在发现阶段预测生物过程将如何影响最终产品质量的手段。

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