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Raman Spectroscopy to Monitor Post-Translational Modifications and Degradation in Monoclonal Antibody Therapeutics

机译:拉曼光谱监测单克隆抗体治疗剂的翻译后修饰和降解

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摘要

Monoclonal antibodies (mAbs) represent a rapidly expanding market for biotherapeutics. Structural changes in the mAb can lead to unwanted immunogenicity, reduced efficacy, and loss of material during production. The pharmaceutical sector requires new protein characterization tools that are fast, applicable in situ and to the manufacturing process. Raman has been highlighted as a technique to suit this application as it is information-rich, minimally invasive, insensitive to water background and requires little to no sample preparation. This study investigates the applicability of Raman to detect Post-Translational Modifications (PTMs) and degradation seen in mAbs. IgG4 molecules have been incubated under a range of conditions known to result in degradation of the therapeutic including varied pH, temperature, agitation, photo, and chemical stresses. Aggregation was measured using size-exclusion chromatography, and PTM levels were calculated using peptide mapping. By combining principal component analysis (PCA) with Raman spectroscopy and circular dichroism (CD) spectroscopy structural analysis we were able to separate proteins based on PTMs and degradation. Furthermore, by identifying key bands that lead to the PCA separation we could correlate spectral peaks to specific PTMs. In particular, we have identified a peak which exhibits a shift in samples with higher levels of Trp oxidation. Through separation of IgG4 aggregates, by size, we have shown a linear correlation between peak wavenumbers of specific functional groups and the amount of aggregate present. We therefore demonstrate the capability for Raman spectroscopy to be used as an analytical tool to measure degradation and PTMs in-line with therapeutic production.
机译:单克隆抗体(MAB)代表了生物治疗方法的迅速扩大的市场。 MAb的结构变化可导致不需要的免疫原性,降低疗效和生产过程中的材料损失。制药部门需要新的蛋白质表征工具,这些工具快速,适用于原位和制造过程。 RAMAN被强调为适合这种应用的技术,因为它是一种信息丰富,微创的侵入性,对水背景不敏感,并且不需要少量的样品制备。本研究调查了拉曼检测翻译后修饰(PTMS)和MAB中的降解的适用性。已经在已知的一系列条件下孵育IgG4分子,导致治疗剂的降解,包括不同的pH,温度,搅拌,照片和化学胁迫。使用尺寸排阻色谱法测量聚集,使用肽测绘计算PTM水平。通过将具有拉曼光谱和圆形二色性(CD)光谱结构分析的主成分分析(PCA)组合通过结合拉曼光谱和圆形二色性(CD)光谱结构分析,我们能够将基于PTM的蛋白质分离和降解。此外,通过识别导致PCA分离的关键频带,我们可以将光谱峰与特定PTM相关联。特别地,我们已经鉴定了一种峰值,其在具有更高水平的TRP氧化水平的样品中表现出偏移。通过尺寸分离IgG4聚集体,我们已经示出了特定官能团的峰值波数与存在的聚集量之间的线性相关性。因此,我们证明了拉曼光谱用作分析工具的能力,以测量与治疗生产在线测量降解和PTM。

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  • 来源
    《Analytical chemistry》 |2020年第15期|共9页
  • 作者单位

    Univ Manchester Sch Chem Manchester Inst Biotechnol Manchester M1 7DN Lancs England;

    UCB Pharma Ltd UCB Celltech Slough SL1 3WE Berks England;

    UCB Pharma Ltd UCB Celltech Slough SL1 3WE Berks England;

    UCB Pharma Ltd UCB Celltech Slough SL1 3WE Berks England;

    UCB Pharma Ltd UCB Celltech Slough SL1 3WE Berks England;

    Univ Liverpool Inst Integrat Biol Dept Biochem Liverpool L69 7ZB Merseyside England;

    Univ Manchester Fac Biol Med &

    Hlth Sch Biol Sci Div Neurosci &

    Expt Psychol Manchester M13 9PT Lancs England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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