Analytical Chemistry Group , Regeneron Pharmaceuticals Inc. , 777 Old Saw Mill River Road , Tarrytown , New York 10591-6707 , United States.
Anal Chem. 2018 Nov 6;90(21):13013-13020. doi: 10.1021/acs.analchem.8b03773. Epub 2018 Oct 18.
In therapeutic monoclonal antibody (mAb) development, charge heterogeneity of a mAb molecule is often associated with critical quality attributes and is therefore monitored throughout development and during QC release to ensure product and process consistency. Elucidating the cause of each charge variant species is an involved process that often requires offline fractionation by ion exchange chromatography (IEX) followed by mass spectrometry (MS) analysis, largely due to the incompatibility of conventional IEX buffers for direct MS detection. In this study, we have developed a method that combines a generic strong cation exchange (SCX) chromatography step with ultrasensitive online native MS analysis (SCX-MS) optimized for mAb separation and detection. As demonstrated by analyzing mAb molecules with a wide range of pI (isoelectric point) values, the developed method can consistently achieve both high-resolution IEX separation and ultrasensitive MS detection of low-abundance charge variant species. Using this method, we analyzed the charge heterogeneity of NISTmAb reference material 8671 (NISTmAb) at both whole antibody and subdomain levels. In particular, due to the high sensitivity, a nonconsensus Fab glycosylation site, present at a very low level (<0.1%), was directly detected in the NISTmAb sample without any enrichment. The structure and location of this Fab glycosylation was further characterized by peptide mapping analysis. Despite the extensive characterization of NISTmAb material in previous studies, this is the first time that this Fab-glycosylated variant has been identified in the NISTmAb, demonstrating the value of this new method in achieving a more comprehensive characterization of charge heterogeneity for therapeutic mAbs.
在治疗性单克隆抗体 (mAb) 开发中,mAb 分子的电荷异质性通常与关键质量属性相关联,因此在整个开发过程中和 QC 放行期间进行监测,以确保产品和工艺的一致性。阐明每种电荷变异体物种的原因是一个复杂的过程,通常需要通过离子交换色谱 (IEX) 进行离线分馏,然后进行质谱 (MS) 分析,这主要是由于常规 IEX 缓冲液与直接 MS 检测不兼容。在这项研究中,我们开发了一种方法,该方法将通用的强阳离子交换 (SCX) 色谱步骤与优化用于 mAb 分离和检测的超灵敏在线天然 MS 分析 (SCX-MS) 相结合。通过分析具有广泛等电点 (pI) 值的 mAb 分子,证明所开发的方法可以一致地实现高分辨率 IEX 分离和低丰度电荷变异体物种的超灵敏 MS 检测。使用该方法,我们在整个抗体和亚结构域水平上分析了 NISTmAb 参考物质 8671 (NISTmAb) 的电荷异质性。特别是,由于灵敏度高,在 NISTmAb 样品中无需富集即可直接检测到非常低水平 (<0.1%) 的非共识 Fab 糖基化位点。通过肽图分析进一步表征了该 Fab 糖基化的结构和位置。尽管在以前的研究中已经对 NISTmAb 材料进行了广泛的表征,但这是首次在 NISTmAb 中鉴定出这种 Fab 糖基化变体,证明了这种新方法在实现治疗性 mAb 电荷异质性更全面表征方面的价值。