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Capillary Isoelectric Focusing-Mass Spectrometry Method for the Separation and Online Characterization of Intact Monoclonal Antibody Charge Variants

机译:毛细管等电聚焦 - 质谱法,用于分离和在线表征完整单克隆抗体电荷变体

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摘要

We report a new online capillary isoelectric focusing-mass spectrometry (CIEF-MS) method for monoclonal antibody (mAb) charge variant analysis using an electrokinetically pumped sheath-flow nanospray ion source and a time-of-flight MS with pressure-assisted chemical mobilization. To develop a successful, reliable CIEF-MS method for mAb, we have selected and optimized many critical, interrelating reagents and parameters that include (1) MS-friendly anolyte and catholyte; (2) a glycerol enhanced sample mixture that reduced non-CIEF electrophoretic mobility and band broadening; (3) ampholyte selected for balancing resolution and MS sensitivity; (4) sheath liquid composition optimized for efficient focusing, mobilization, and electrospray ionization; (5) judiciously selected CIEF running parameters including injection amount, field strength, and applied pressure. The fundamental premise of CIEF was well maintained as verified by the linear correlation (R-2 = 0.99) between pI values and migration time using a mixture of pI markers. In addition, the charge variant profiles of trastuzumab, bevacizumab, infliximab, and cetuximab, obtained using this CIEF-MS method, were corroborated by imaged CIEF-UV (iCIEF-UV) analyses. The relative standard deviations (RSD) of absolute migration time of pI markers were all less than 5% (n = 4). Triplicate analyses of bevacizumab showed RSD less than 1% for relative migration time to an internal standard and RSD of 7% for absolute MS peak area. Moreover, the antibody charge variants were characterized using the online intact MS data. To the best of our knowledge, this is the first time that direct online MS detection and characterization were achieved for mAb charge variants resolved by CIEF as indicated by a well-established linear pH gradient and correlated CIEF-UV charge variant profiles.
机译:我们报告了一种新的在线毛细管等电聚焦 - 质谱(CIEF-MS)方法,用于单克隆抗体(MAB)电荷变体分析,使用电动泵浦的鞘流纳秒支护离子源和具有压力辅助化学动员的飞行时间MS 。为MAB开发成功,可靠的CIEF-MS方法,我们选择并优化了包括(1)MS友好的Anolyte和Coillyte的许多关键,相互关联的试剂和参数; (2)增强甘油增强的样品混合物,可降低非凸型电泳迁移率和带宽化; (3)选择用于平衡分辨率和MS敏感性的ampholyte; (4)鞘液组合物优化,用于高效聚焦,动员和电喷雾电离; (5)明智地选择的凸轮运行参数,包括喷射量,场强和施加压力。通过使用PI标记的混合物在PI值和迁移时间之间的线性相关(R-2 = 0.99)验证,凸实的基本前提是很好的。另外,通过成像的CIF-UV(ICIEF-UV)分析,通过成像的CIF-UV(ICIEF-UV)分析来证实了曲妥珠单抗,贝伐单抗,英夫利昔单抗和西妥昔单抗和西列替昔单抗的电荷变体谱。 PI标记的绝对迁移时间的相对标准偏差(RSD)均小于5%(n = 4)。贝伐单抗的三份分析显示出相对迁移时间的RSD小于1%,对于绝对MS峰面积的内标和7%的RSD为7%。此外,使用在线完整的MS数据表征抗体电荷变体。据我们所知,这是第一次为通过粗糙的线性pH梯度和相关的CIF-UV电荷变体轮廓所示,实现了由CIEF解决的MAB电荷变体的直接在线MS检测和表征。

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  • 来源
    《Analytical chemistry》 |2018年第3期|共9页
  • 作者单位

    Bristol Myers Squibb Res &

    Dev POB 4000 Princeton NJ 08543 USA;

    CMP Sci Corp 760 Parkside Ave Suite 211 Brooklyn NY 11226 USA;

    CMP Sci Corp 760 Parkside Ave Suite 211 Brooklyn NY 11226 USA;

    Bristol Myers Squibb Res &

    Dev POB 4000 Princeton NJ 08543 USA;

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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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