Institute of Pharmacy, Pharmacognosy, Center for Molecular Biosciences (CMBI), University of Innsbruck, 6020 Innsbruck, Austria.
Institute for Analytical Chemistry and Radiochemistry, Center for Molecular Biosciences (CMBI), University of Innsbruck, 6020 Innsbruck, Austria.
J Pharm Biomed Anal. 2019 Jan 5;162:117-123. doi: 10.1016/j.jpba.2018.08.054. Epub 2018 Aug 28.
A novel polymer monolith based on the dicationic crosslinker 3,3'-(hexane-1,6-diyl)bis(1-vinylimidazolium) bromide, the monomer 1-vinylimidazole and a ternary porogen mixture (1-propanol, decan-1-ol and water) was developed and optimized for capillary electrochromatography. This aim was accomplished by adjusting the composition of individual constituents in the polymerization mixture and monitored based on several relevant parameters (e.g. pore structure by scanning electron microscopy, generation of electroosmotic flow, or permeability of material). The ultimately selected composition yielded a monolithic phase which excellently resolved six methylxanthines (including caffeine, theobromine and theophylline) in 15 min. Key requirements concerning the utilized buffer were an acidic pH of 3 and the addition of 50% acetonitrile; additionally, a negative voltage (-25 kV) had to be applied during analyses. The proposed separation mechanism was mixed mode, i.e. the combination of electrostatic repulsion and hydrophobic interaction. Monolith fabrication as well as separation efficiency were found to be highly repeatable, the material was mechanically stable and useable for at least 150 injections. Thus the presented stationary phase is definitely a very promising option for CEC.
一种基于二价交联剂 3,3'-(己烷-1,6-二基)双(1-乙烯基咪唑鎓)溴化物、单体 1-乙烯基咪唑和三元致孔剂混合物(1-丙醇、癸-1-醇和水)的新型聚合物整体柱被开发和优化用于毛细管电色谱。这一目标是通过调整聚合混合物中各成分的组成来实现的,并基于几个相关参数进行监测(例如通过扫描电子显微镜观察孔结构、电渗流的产生或材料的渗透性)。最终选择的组成产生了一种整体相,能够在 15 分钟内极好地分离六种甲基黄嘌呤(包括咖啡因、可可碱和茶碱)。所用缓冲液的关键要求是 pH 值为 3 的酸性和添加 50%乙腈;此外,在分析过程中还必须施加负电压(-25 kV)。所提出的分离机制是混合模式,即静电排斥和疏水相互作用的组合。整体柱的制造和分离效率被发现具有高度重复性,该材料机械稳定,可至少进行 150 次注射。因此,所提出的固定相绝对是 CEC 的一个非常有前途的选择。