Redman Erin A, Batz Nicholas G, Mellors J Scott, Ramsey J Michael
Department of Chemistry, ‡Department of Applied Physical Sciences, §Department of Biomedical Engineering, ∥Carolina Center for Genome Sciences, University of North Carolina , Chapel Hill, North Carolina 27599, United States.
Anal Chem. 2015 Feb 17;87(4):2264-72. doi: 10.1021/ac503964j. Epub 2015 Jan 29.
Here, we demonstrate an integrated microfluidic capillary electrophoresis-electrospray ionization (CE-ESI) device for the separation of intact monoclonal antibody charge variants with online mass spectrometric (MS) identification. The need for dynamic coating and zwitterionic background electrolyte (BGE) additives has been eliminated by utilizing surface chemistry within the device channels to control analyte adsorption and electroosmotic flow (EOF) while maintaining separation efficiency. The effectiveness of this strategy was illustrated with the separation of charge variants of Infliximab. Three major species corresponding to C-terminal lysine variants were separated with an average resolution of 0.80 and identified by mass difference. In addition to the lysine variants, masses were determined for minor acidic and basic species. The separation of these variants prior to MS analysis facilitated the identification of glycosylation patterns for each of the variants. The general applicability of this method was demonstrated by analyzing two additional monoclonal antibody species: an IgG2 antibody and an IgG1 antibody conjugate. The IgG2 proved to have similar modifications to Infliximab with lower relative abundances of the lysine variants. Analysis of the IgG1 drug conjugate further exemplified the advantages of MS detection; differences in the extent of antibody conjugation were detectable despite limited CE resolution. The CE-ESI-MS methodology described here is a rapid and generic strategy for the separation of intact mAb charge variants and facilitates the identification of variants through MS detection.
在此,我们展示了一种集成微流控毛细管电泳-电喷雾电离(CE-ESI)装置,用于完整单克隆抗体电荷变体的分离及在线质谱(MS)鉴定。通过利用装置通道内的表面化学来控制分析物吸附和电渗流(EOF),同时保持分离效率,消除了对动态涂层和两性离子背景电解质(BGE)添加剂的需求。通过英夫利昔单抗电荷变体的分离说明了该策略的有效性。分离出了对应于C末端赖氨酸变体的三种主要物种,平均分辨率为0.80,并通过质量差异进行了鉴定。除了赖氨酸变体,还测定了少量酸性和碱性物种的质量。在MS分析之前对这些变体进行分离,有助于鉴定每个变体的糖基化模式。通过分析另外两种单克隆抗体物种:一种IgG2抗体和一种IgG1抗体缀合物,证明了该方法的普遍适用性。IgG2被证明与英夫利昔单抗有相似的修饰,但赖氨酸变体的相对丰度较低。对IgG1药物缀合物的分析进一步例证了MS检测的优势;尽管CE分辨率有限,但仍可检测到抗体缀合程度的差异。本文所述的CE-ESI-MS方法是一种快速且通用的策略,用于完整单克隆抗体电荷变体的分离,并通过MS检测促进变体的鉴定。