Institute of Chemical Technologies and Analytics, TU Wien (Vienna University of Technology), Vienna, Austria.
Institute of Chemical Technologies and Analytics, TU Wien (Vienna University of Technology), Vienna, Austria.
J Chromatogr B Analyt Technol Biomed Life Sci. 2021 Oct 1;1182:122925. doi: 10.1016/j.jchromb.2021.122925. Epub 2021 Sep 20.
Due to the fast growing importance of monoclonal antibodies in biomedical research, bioanalytics and human therapy, sensitive, fast and reliable methods are needed to monitor their production, target their characteristics, and for their final quality control. Application of a nano electrospray (nES) with soft X-ray radiation (SXR) based charge reduction and differential mobility analysis (DMA, aka nano electrospray gas-phase electrophoretic mobility molecular analysis, nES GEMMA) allows the size-separation and detection of macromolecules and (bio-)nanoparticles from a few nm up to several hundreds of nm in diameter in a native-like environment. The current study focuses on the analysis of a 148 kDa recombinant monoclonal antibody (rmAb) with the above mentioned instrumental setup and applying an universal detector, i.e. a water-based condensation particle detector (CPC). Next to the intact rmAb, its aggregates and fragment products after digestion with IdeS protease were analyzed. Additionally, influence of temperature treatment and pH variation on the stability of the rmAb was monitored. In this context, changes in electrophoretic mobility diameter (EMD) values, peak shape, and signal intensity based on particle numbers were of interest. Molecular weights calculated by application of a correlation derived from respective standard protein compounds were compared to mass spectrometric values and were found to be in good accordance. To conclude, we demonstrate that nES-DMA is a valuable tool in the characterization and quality control of rmABs.
由于单克隆抗体在生物医学研究、生物分析和人类治疗中的重要性迅速增长,因此需要敏感、快速和可靠的方法来监测其生产、靶向其特性,并对其最终质量进行控制。应用纳米电喷雾(nES)与软 X 射线辐射(SXR)相结合的电荷还原和差分迁移率分析(DMA,又名纳米电喷雾气相电泳迁移率分子分析,nES GEMMA)可以在类似于天然的环境中对直径从几纳米到几百纳米的大分子和(生物)纳米颗粒进行尺寸分离和检测。本研究重点分析了一种 148 kDa 的重组单克隆抗体(rmAb),使用上述仪器设置和通用检测器,即基于水的冷凝粒子检测器(CPC)。除了完整的 rmAb 外,还分析了 IdeS 蛋白酶消化后的其聚集物和片段产物。此外,还监测了温度处理和 pH 值变化对 rmAb 稳定性的影响。在这方面,基于粒子数量的电泳迁移率直径(EMD)值、峰形和信号强度的变化很重要。通过应用源自相应标准蛋白质化合物的相关性计算得到的分子量与质谱值进行了比较,结果发现两者非常吻合。总之,我们证明了 nES-DMA 是 rmAB 表征和质量控制的有价值工具。