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采用强阳离子交换色谱-原位质谱联用技术进行高通量在线分析治疗性单克隆抗体的电荷异质性。

Hyphenation of strong cation exchange chromatography to native mass spectrometry for high throughput online characterization of charge heterogeneity of therapeutic monoclonal antibodies.

机构信息

Protein Sciences, Discovery Biologics, Merck & Co., Inc., South San Francisco, CA, USA.

出版信息

MAbs. 2020 Jan-Dec;12(1):1763762. doi: 10.1080/19420862.2020.1763762.

Abstract

Characterization of charge heterogeneity in monoclonal antibodies (mAbs) is needed during developability assessment and downstream development of drug candidates. Charge heterogeneity can come from post-translational modifications like deamidation, isomerization, and sialylation. Elucidation of charge variants with mass spectrometry (MS) has historically been challenging. Due to the nonvolatility and high ionic strength of conventional buffer systems, labor-intensive offline fractionation followed by MS analysis is routinely used. Here, we describe an alternative strategy that directly couples strong cation exchange (SCX) chromatography to high-resolution Orbitrap MS for online native MS analysis (SCX-MS). A combined pH and salt gradient was used for universal separation of mAbs from a wide range of pI values (6.38 ~ 9.2), including infliximab (Remicade®, chimeric IgG1/kappa), NISTmab (humanized IgG1/kappa) and trastuzumab (Herceptin®, humanized IgG1/kappa), without tailoring of chromatographic profiles. Liquid chromatography and MS parameters were optimized to achieve high-quality spectra and enhanced detection of low abundant species under high flow rate conditions. Genedata Expressionist, a vendor agnostic software, was used for data processing. This integrated strategy allows unbiased characterization of numerous charge variant species and low molecular weight fragments (<0.05%) without post-column flow splitting. The application was further expanded with middle-up approaches for subdomain analysis, which demonstrated the versatility of the strategy for analysis of various construct types. With our analysis of mAbs during developability assessment and forced degradation studies, which aimed at assessing potential critical quality attributes in antibody drug molecules, we provide, for the first time, direct visualization of molecular alterations of mAbs at intact level. Furthermore, strong correlation was observed between this novel MS approach and analysis by capillary isoelectric focusing.

摘要

在候选药物的可开发性评估和下游开发过程中,需要对单克隆抗体 (mAb) 的电荷异质性进行表征。电荷异质性可能来自翻译后修饰,如脱酰胺、异构化和唾液酸化。传统缓冲系统的非挥发性和高离子强度使得用质谱 (MS) 阐明电荷变异体具有挑战性。由于常规缓冲系统的非挥发性和高离子强度,通常需要进行劳动密集型的离线分级,然后再进行 MS 分析。在这里,我们描述了一种替代策略,即直接将强阳离子交换 (SCX) 色谱法与高分辨率 Orbitrap MS 耦合,用于在线天然 MS 分析 (SCX-MS)。采用 pH 和盐梯度的组合,可从广泛的等电点 (pI) 值(6.38 至 9.2)范围内,包括英夫利昔单抗(Remicade®,嵌合 IgG1/κ)、NISTmab(人源化 IgG1/κ)和曲妥珠单抗(Herceptin®,人源化 IgG1/κ)中,对 mAb 进行通用分离,而无需定制色谱图。优化了液相色谱和 MS 参数,以在高流速条件下获得高质量的光谱,并增强对低丰度物质的检测。使用与供应商无关的 Genedata Expressionist 软件进行数据处理。这种集成策略允许在不进行柱后分流的情况下,对大量电荷变异体物种和低分子量片段(<0.05%)进行无偏特征描述。该应用程序进一步扩展到中间分析方法,用于子域分析,证明了该策略用于分析各种构建体类型的多功能性。在我们对候选药物的可开发性评估和强制降解研究中的 mAb 分析中,我们首次直接观察到完整水平上 mAb 的分子变化,目的是评估抗体药物分子中的潜在关键质量属性。此外,还观察到该新 MS 方法与毛细管等电聚焦分析之间的强相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1555/7299211/832b8cec760f/kmab-12-01-1763762-g001.jpg

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