Rebane Riin, Rodima Toomas, Kütt Agnes, Herodes Koit
Institute of Chemistry, University of Tartu, Ravila 14a, 50411 Tartu, Estonia.
Institute of Chemistry, University of Tartu, Ravila 14a, 50411 Tartu, Estonia.
J Chromatogr A. 2015 Apr 17;1390:62-70. doi: 10.1016/j.chroma.2015.02.050. Epub 2015 Feb 22.
Derivatization is one of the most common ways for improving chromatographic separation and sensitivity for LC-ESI-MS analysis. The aim of this work was to design new derivatization reagents for LC-ESI-MS analysis of amino acids which would (1) provide good reversed phase chromatographic separation, (2) most importantly, provide low detection limits, (3) be easily synthesized, (4) produce derivatives which are less susceptible to matrix influences and (5) have convenient derivatization procedure with stable derivatives suitable for automatization. In the current work two new LC-ESI-MS compatible derivatization reagents have been designed and synthesized, dibenzyl ethoxymethylene malonate (DBEMM) and benzyl ethyl ethoxymethylene malonate (EBEMM). The DBEMM meets all the goals set with instrumental detection limits as low as 1 femtomole for amino acids and 40 attomole for selenoamino acids.
衍生化是改善液相色谱 - 电喷雾电离质谱(LC - ESI - MS)分析的色谱分离和灵敏度的最常用方法之一。本工作的目的是设计用于氨基酸LC - ESI - MS分析的新型衍生化试剂,这些试剂应:(1)提供良好的反相色谱分离;(2)最重要的是,提供低检测限;(3)易于合成;(4)产生的衍生物对基质影响的敏感性较低;(5)具有方便的衍生化程序,且衍生物稳定,适合自动化。在当前工作中,已设计并合成了两种新的与LC - ESI - MS兼容的衍生化试剂,二苄基乙氧基甲基丙二酸酯(DBEMM)和苄基乙基乙氧基甲基丙二酸酯(EBEMM)。DBEMM达到了设定的所有目标,氨基酸的仪器检测限低至1飞摩尔,硒代氨基酸的检测限低至40阿托摩尔。