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采用 2D HIC-WCX-MS 对基于电荷的重组单克隆抗体的异质性进行多属性监测。

Multiattribute Monitoring of Charge-Based Heterogeneity of Recombinant Monoclonal Antibodies Using 2D HIC-WCX-MS.

机构信息

Department of Chemical Engineering, IIT Delhi, Hauz Khas, New Delhi, Delhi 110016, India.

出版信息

Anal Chem. 2022 Nov 1;94(43):15018-15026. doi: 10.1021/acs.analchem.2c02931. Epub 2022 Oct 19.

Abstract

Charged heterogeneity of monoclonal antibody (mAb) products is regarded as a critical quality attribute (CQA) depending on its impact on the safety and efficacy profile of the product. Hence, manufacturers are expected to perform a comprehensive characterization of the charge heterogeneity to ensure that the manufactured product meets its specifications. Further, monitoring is also expected during the product lifecycle to demonstrate consistency in product quality. However, conventional analytical methods for characterization of hydrophobic and charge variants are nonvolatile salt-based and require manual fraction collection and desalting steps before analysis through mass spectrometry can be performed. In the present study, a workflow of a two-dimensional liquid chromatography method using mass spectrometry (MS)-compatible buffers coupled with native mass spectrometry was performed to characterize hydrophobic variants in the first dimension and charge variants in the second dimension without any need for manual fractionation. This novel two-dimensional (2D) hydrophobic interaction chromatography (HIC)-weak cation-exchange chromatography (WCX)-MS workflow identified 10 variants in mAb A, out of which 2 variants are exclusive to the 2D orthogonal method. Similarly, for mAb B, a total of 11 variants are identified, including 5 variants exclusive to the 2D orthogonal workflow. When compared to stand-alone, HIC resolved only 4 variants for both mAbs and WCX resolved 7 variants for mAb A and 6 variants for mAb B. In addition, the proposed method allows direct characterization of hydrophobic/charge variant peaks through native mass spectrometry in a single-run workflow.

摘要

单克隆抗体 (mAb) 产品的荷质比不均一性被视为关键质量属性 (CQA),因为其会影响产品的安全性和疗效。因此,制造商需要对荷质比不均一性进行全面的表征,以确保生产的产品符合规格。此外,还需要在产品生命周期内进行监测,以证明产品质量的一致性。然而,传统的用于疏水性和电荷变异体分析的方法是非挥发性盐基的,并且在通过质谱进行分析之前需要进行手动馏分收集和脱盐步骤。在本研究中,使用与质谱 (MS) 兼容的缓冲液进行二维液相色谱法 (LC-MS) 工作流程,无需手动馏分收集即可在第一维中对疏水性变异体进行表征,在第二维中对电荷变异体进行表征。这种新颖的二维 (2D) 疏水性相互作用色谱 (HIC)-弱阳离子交换色谱 (WCX)-MS 工作流程鉴定了 mAb A 中的 10 种变异体,其中 2 种变异体是 2D 正交方法所特有的。类似地,对于 mAb B,总共鉴定出 11 种变异体,包括 2D 正交工作流程特有的 5 种变异体。与单独的 HIC 相比,两种 mAb 仅通过 HIC 解析出 4 种变异体,而 mAb A 通过 WCX 解析出 7 种变异体,mAb B 通过 WCX 解析出 6 种变异体。此外,该方法允许通过单次运行工作流程直接通过 native MS 对疏水性/电荷变异体峰进行表征。

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