Bennett Raffeal, Olesik Susan V
Department of Chemistry and Biochemistry, The Ohio State University, 100 West 18th Avenue, Columbus, OH, 43210, United States.
Department of Chemistry and Biochemistry, The Ohio State University, 100 West 18th Avenue, Columbus, OH, 43210, United States.
Anal Chim Acta. 2017 Apr 1;960:151-159. doi: 10.1016/j.aca.2017.01.006. Epub 2017 Jan 24.
Enhanced fluidity liquid chromatography using the hydrophilic interaction retention mechanism (EFLC-HILIC) is studied as an alternative separation mode for analyzing oligosaccharides and other sugars. These carbohydrates, which are important for the study of foods and biological systems, are difficult to comprehensively profile and either require a non-green, expensive solvent (i.e. acetonitrile) or derivatization of the analytes at the expense of time, sample loss, and loss of quantitative information. These difficulties arise from the diverse isomerism, mutarotation, and lack of a useable chromophore/fluorophore for spectroscopic detection. Enhanced fluidity liquid chromatography is an alternative separation method that involves the use of conventional polar solvents, such as methanol/water mixtures, as the primary mobile phase component and liquid carbon dioxide (CO) as the modifier in subcritical conditions. The addition of liquid CO enhances diffusivity and decreases viscosity while maintaining mixture polarity, which typically results in reduced time of analysis and higher efficiency. This work illustrates an optimized EFLC-HILIC separation of a test mixture of oligosaccharides and simple sugars with a resolution greater than 1.3 and an analysis time decrease of over 35% compared to a conventional HPLC HILIC-mode analysis using acetonitrile/water mobile phases.
采用亲水相互作用保留机制的增强流动性液相色谱法(EFLC-HILIC)作为分析寡糖和其他糖类的一种替代分离模式进行了研究。这些碳水化合物对于食品和生物系统的研究很重要,但难以进行全面的分析,要么需要使用不环保、昂贵的溶剂(即乙腈),要么需要对分析物进行衍生化处理,这会耗费时间、造成样品损失并丢失定量信息。这些困难源于多样的异构现象、变旋现象以及缺乏用于光谱检测的可用发色团/荧光团。增强流动性液相色谱法是一种替代分离方法,它涉及使用常规极性溶剂,如甲醇/水混合物,作为主要流动相成分,并在亚临界条件下使用液态二氧化碳(CO)作为改性剂。添加液态CO可提高扩散率并降低粘度,同时保持混合物的极性,这通常会缩短分析时间并提高效率。这项工作展示了对寡糖和单糖测试混合物的EFLC-HILIC分离进行优化后的结果,其分离度大于1.3,与使用乙腈/水流动相的传统HPLC HILIC模式分析相比,分析时间减少了超过35%。