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一种使用多维色谱法对半胱氨酸共轭抗体-药物共轭物结构进行质谱确证的快速在线方法。

A rapid on-line method for mass spectrometric confirmation of a cysteine-conjugated antibody-drug-conjugate structure using multidimensional chromatography.

作者信息

Birdsall Robert E, Shion Henry, Kotch Frank W, Xu April, Porter Thomas J, Chen Weibin

机构信息

a Biopharmaceutical Business Operations, Waters Corporation ; Milford , MA USA.

b Pfizer Bioprocess Research & Development, Pfizer Inc ; Pearl River , NY USA.

出版信息

MAbs. 2015;7(6):1036-44. doi: 10.1080/19420862.2015.1083665. Epub 2015 Aug 25.

Abstract

Cysteine-conjugated antibody-drug conjugates (ADCs) are manufactured using controlled partial reduction and conjugation chemistry with drug payloads that typically occur in intervals of 0, 2, 4, 6, and 8. Control of heterogeneity is of particular importance to the quality of ADC product because drug loading and distribution can affect the safety and efficacy of the ADC. Liquid chromatography ultra-violet (LC-UV)-based methods can be used to acquire the drug distribution profiles of cysteine-conjugated ADCs when analyzed using hydrophobic interaction chromatography (HIC). However, alternative analysis techniques are often required for structural identification when conjugated drugs do not possess discrete ultra-violet absorbance properties for precise assessment of the drug-to-antibody ratio (DAR). In this study, multidimensional chromatography was used as an efficient method for combining non-compatible techniques, such as HIC, with analysis by mass spectrometry (LC/LC/QTOF-MS) for rapid on-line structural elucidation of species observed in HIC distribution profiles of cysteine-conjugated ADCs. The methodology was tested using an IgG1 mAb modified by cysteine conjugation with a non-toxic drug mimic. Structural elucidation of peaks observed in the HIC analysis (1(st) dimension) were successfully identified based on their unique sub-unit masses via mass spectrometry techniques once dissociation occurred under denaturing reversed phase conditions (2(nd) dimension). Upon identification, the DAR values were determined to be 2.83, 4.44, and 5.97 for 3 drug load levels (low-, medium-, and high-loaded ADC batches), respectively, based on relative abundance from the LC-UV data. This work demonstrates that multidimensional chromatography coupled with MS, provides an efficient approach for on-line biotherapeutic characterization to ensure ADC product quality.

摘要

半胱氨酸偶联抗体药物偶联物(ADC)是通过可控的部分还原和偶联化学方法制备的,其药物负载量通常以0、2、4、6和8的间隔出现。控制异质性对ADC产品质量尤为重要,因为药物负载和分布会影响ADC的安全性和有效性。当使用疏水相互作用色谱(HIC)分析时,基于液相色谱-紫外(LC-UV)的方法可用于获取半胱氨酸偶联ADC的药物分布图谱。然而,当偶联药物不具有离散的紫外吸收特性以精确评估药物与抗体比率(DAR)时,结构鉴定通常需要其他分析技术。在本研究中,多维色谱被用作一种有效的方法,将不兼容的技术(如HIC)与质谱分析(LC/LC/QTOF-MS)相结合,用于快速在线阐明半胱氨酸偶联ADC的HIC分布图谱中观察到的物种的结构。该方法使用与无毒药物模拟物进行半胱氨酸偶联修饰的IgG1单克隆抗体进行了测试。在变性反相条件下(第二维)发生解离后,通过质谱技术基于其独特的亚基质量成功鉴定了HIC分析(第一维)中观察到的峰的结构。鉴定后,根据LC-UV数据的相对丰度,确定3种药物负载水平(低、中和高负载ADC批次)的DAR值分别为2.83、4.44和5.97。这项工作表明,多维色谱与质谱联用为在线生物治疗表征提供了一种有效的方法,以确保ADC产品质量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a96/4966495/437b8660548e/kmab-07-06-1083665-g001.jpg

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