Shah Arnik, Shah Parth, Johnson Alex, Bender Jean, Gumerov Dmitry, Ding Jingwen, Mack Scott, Stone Matthew D, Ostrowski Maggie A
Visterra Inc, 275 second avenue, Waltham, Massachusetts 02451, United States.
SCIEX, Fremont, California 94538, United States.
J Am Soc Mass Spectrom. 2025 Aug 6;36(8):1641-1649. doi: 10.1021/jasms.5c00058. Epub 2025 Jul 28.
Accurate characterization of charge variants in biologics is crucial to uphold stringent quality standards ensuring the safety and efficacy of biotherapeutic products and regulatory requirements for the Biologic Licensing Application (BLA) process enabling marketing application. These variants, arising from post-translational modifications (PTMs) during upstream processing and enzymatic/nonenzymatic reactions in downstream processing and storage, can significantly impact therapeutic potency, efficacy, and immunogenicity. Conventional methods for characterizing charge variants typically involve labor-intensive fraction enrichment, consuming time and resources. However, recent technological advancements, exemplified by the Intabio ZT system's innovative platform, enable the seamless and direct integration of imaged capillary isoelectric focusing (icIEF) and UV quantitation with mass spectrometry (MS) PTM identification, facilitating rapid and unbiased characterization. In this study, we conduct a comparative assessment of the charge variant characterization of investigative mAb-1 using icIEF-UV/MS analysis and a traditional fractionation-based workflow. Our results demonstrated that icIEF-UV/MS-based proteoform characterization provided comparable icIEF-UV separation and quantitation and superior direct MS-based peak characterization with shorter time and less sample processing compared to conventional fractionation approaches.
准确表征生物制品中的电荷变体对于维持严格的质量标准至关重要,这确保了生物治疗产品的安全性和有效性以及生物制品许可申请(BLA)过程的监管要求,从而实现上市申请。这些变体源于上游加工过程中的翻译后修饰(PTM)以及下游加工和储存过程中的酶促/非酶促反应,可能会显著影响治疗效力、功效和免疫原性。表征电荷变体的传统方法通常涉及劳动强度大的馏分富集,既耗时又耗资源。然而,以Intabio ZT系统的创新平台为代表的最新技术进展,实现了成像毛细管等电聚焦(icIEF)和紫外定量与质谱(MS)PTM鉴定的无缝直接整合,便于进行快速且无偏差的表征。在本研究中,我们使用icIEF-UV/MS分析和基于传统分级分离的工作流程对研究性单克隆抗体-1的电荷变体表征进行了比较评估。我们的结果表明,与传统分级分离方法相比,基于icIEF-UV/MS的蛋白质异构体表征提供了可比的icIEF-UV分离和定量,以及更优的基于直接质谱的峰表征,且时间更短、样品处理更少。