Institute of Organic Chemistry and Biochemistry, Czech Academy of Sciences, Prague 6, Czech Republic.
Department of Analytical Chemistry, Faculty of Science, Charles University in Prague, Prague 2, Czech Republic.
J Sep Sci. 2020 Jul;43(13):2579-2588. doi: 10.1002/jssc.201901235. Epub 2020 May 8.
A new capillary high-performance liquid chromatography method with atmospheric pressure chemical ionization mass spectrometry was developed for the analysis of fatty acid methyl esters and long-chain alcohols. The chromatographic separation was achieved using a Zorbax SB-C18 HPLC column (0.3 × 150 mm, 3.5 μm) with a mobile phase composed of acetonitrile and formic acid and delivered isocratically at a flow rate of 10 μL/min. The column temperature was programmed simply, using a common column oven. Good reproducibility of the temperature profile and retention times were achieved. The temperature programming during the isocratic high-performance liquid chromatography run had a similar effect as a solvent gradient; it reduced retention times of later eluting analytes and improved their detection limits. Two atmospheric pressure chemical ionization sources of the mass spectrometry detector were compared: an enclosed conventional ion source and an in-house made ion source with a glass microchip nebulizer. The enclosed source provided better detectability of saturated fatty acid methyl esters and made it possible to determine the double bond positions using acetonitrile-related adducts, while the open chip-based source provided better analytical figures of merit for unsaturated fatty acid methyl esters. Temperature-programmed capillary high-performance liquid chromatography is a promising method for analyzing neutral lipids in lipidomics and other applications.
建立了一种新的毛细管高效液相色谱-大气压化学电离质谱法,用于分析脂肪酸甲酯和长链醇。采用 Zorbax SB-C18 HPLC 柱(0.3×150mm,3.5μm),以乙腈和甲酸为流动相,等度洗脱,流速为 10μL/min,实现了色谱分离。柱温程序简单,采用普通柱箱。实现了温度曲线和保留时间的良好重现性。等度高效液相色谱运行过程中的温度编程与溶剂梯度具有相似的效果;它缩短了后洗脱分析物的保留时间,提高了它们的检测限。比较了质谱检测器的两种大气压化学电离源:封闭的常规离子源和带有玻璃微芯片雾化器的自制离子源。封闭源对饱和脂肪酸甲酯具有更好的检测能力,并能够使用乙腈相关加合物确定双键位置,而基于开放芯片的源则为不饱和脂肪酸甲酯提供了更好的分析性能。程序升温毛细管高效液相色谱法是一种很有前途的分析脂质组学和其他应用中中性脂质的方法。