Institute of Pharmaceutical Analysis, College of Pharmacy/State Key Laboratory of Bioactive Molecules and Druggability Assessment/International Cooperative Laboratory of Traditional Chinese Medicine Modernization and Innovative Drug Development of Ministry of Education (MOE) of China, Jinan University, Guangzhou 510632, China.
Laboratory of Analytical Pharmaceutical Chemistry, Department of Pharmaceutical Sciences, CIRM, University of Liege, CHU B36, Liege B-4000, Belgium.
J Chromatogr A. 2024 Oct 11;1734:465316. doi: 10.1016/j.chroma.2024.465316. Epub 2024 Aug 27.
The structure of zwitterion has great impact on the separation properties of zwitterionic hydrophilic stationary phases. To better understand the role of anionic groups of zwitterions, a novel carboxybetaine-based zwitterionic monolithic column was first prepared through thermo-initiated copolymerization of functional monomer (3-acrylamidopropyl)-dimethyl-(2-carboxymethyl) ammonium (CBAA) and crosslinker ethylene dimethacrylate (EDMA) within 100 μm ID capillary. The optimal poly(CBAA-co-EDMA) monolithic column exhibited satisfactory mechanical and chemical stability, good repeatability, high column efficiency (96,000 plates/m), and excellent separation performance for different classes of polar compounds (i.e., phenols, monophosphate nucleotides, urea and allantoin). A comparative study was then performed among three zwitterionic hydrophilic stationary phases containing different anionic groups, i.e. poly(CBAA-co-EDMA) (carboxybetaine), poly(2-{2-(methacryloyloxy) ethyldimethylammonium}ethyl n-butyl phosphate-co-EDMA) (phosphocholine), and poly(N,N-dimethyl-N-(3-methacrylamidopropyl)-N-(3-sulfopropyl) ammonium betaine-co-EDMA) (sulfobetaine) using benzoic acid derivatives, amine compounds, nucleobases and nucleosides as model analytes. The carboxybetaine-based monolithic column exhibited much higher positive zeta-potential and hydrophilicity, which endows it with a stronger retention capacity for acidic and neutral compounds, but sulfobetaine-based monolithic column exhibited much higher selectivity and retention capacity for the amines. Moreover, their enrichment efficiencies for N-glycopeptides were also evaluated based on their different hydrophilicity, and it was observed that the poly(CBAA-co-EDMA) monolithic material captured 4-8 times more N-glycopeptides compared to the other two materials.
两性离子的结构对两性离子亲水固定相的分离性能有很大的影响。为了更好地理解两性离子中阴离子基团的作用,首次通过热引发的功能单体(3-丙烯酰胺丙基)-二甲基-(2-羧甲基)铵(CBAA)和交联剂乙二醇二甲基丙烯酸酯(EDMA)在 100μm ID 毛细管内共聚合成了一种新型的羧基甜菜碱两性离子整体柱。最佳的聚(CBAA-co-EDMA)整体柱表现出良好的机械和化学稳定性、良好的重复性、高柱效(96000 板/米)和对不同类别的极性化合物(如酚类、单磷酸核苷酸、脲和尿囊素)的出色分离性能。然后,通过比较三种含有不同阴离子基团的两性离子亲水固定相(即聚(CBAA-co-EDMA)(甜菜碱)、聚(2-{2-(甲基丙烯酰氧基)乙基二甲基铵}乙基正丁基磷酸-co-EDMA)(膦胆碱)和聚(N,N-二甲基-N-(3-丙烯酰胺丙基)-N-(3-磺丙基)铵甜菜碱-co-EDMA)(磺基甜菜碱)),使用苯甲酸衍生物、胺类化合物、碱基和核苷作为模型分析物,研究了三种固定相之间的差异。基于聚(CBAA-co-EDMA)整体柱具有更高的正zeta 电位和亲水性,赋予其对酸性和中性化合物更强的保留能力,而基于磺基甜菜碱的整体柱对胺类化合物具有更高的选择性和保留能力。此外,还根据它们不同的亲水性评估了它们对 N-糖肽的富集效率,观察到与其他两种材料相比,聚(CBAA-co-EDMA)整体材料捕获的 N-糖肽多 4-8 倍。