Hommerson Paul, Khan Amjad M, de Jong Gerhardus J, Somsen Govert W
Department of Biomedical Analysis, Utrecht University, Utrecht, The Netherlands.
J Chromatogr A. 2008 Sep 19;1204(2):197-203. doi: 10.1016/j.chroma.2008.04.017. Epub 2008 Apr 15.
The performance of dopant-assisted atmospheric pressure photoionization (DA-APPI) and electrospray ionization (ESI) for the coupling of micellar electrokinetic chromatography (MEKC) with ion trap mass spectrometry (ITMS) was compared using a set of test drugs comprising basic amines, steroids, esters, phenones and a quaternary ammonium compound. The influence of the surfactant sodium dodecyl sulfate (SDS) on analyte signals was studied by infusion of sample through the CE capillary into the respective ion sources. It was found that background electrolytes (BGEs) containing 20-50 mM SDS in 10 mM sodium phosphate (pH 7.5) caused major ionization suppression for both polar and apolar compounds in ESI-MS, whereas APPI-MS signal intensities remained largely unaffected. ESI gave rise to the formation of SDS clusters, which occasionally may cause space-charge effects in the ion trap. Furthermore, extensive sodium-adduct formation was observed for medium polar compounds with ESI-MS, whereas these compounds were detected as their protonated molecules with APPI-MS. Using the BGE containing 20 mM SDS, MEKC-ESI-MS still provides slightly lower limits of detection (LODs) (2.6-3.1 microM) than MEKC-APPI-MS (4.3-6.4 microM) for basic amines. For less polar compounds, highest S/Ns were obtained with APPI-MS detection (LODs, 4.5-71 microM). For BGEs containing 50 mM SDS, the limits of detection for MEKC-APPI-MS were more favorable (factor 1.5-12) than MEKC-ESI-MS for nearly all tested drugs. Spray shield contamination by SDS was lower in DA-APPI-MS than in ESI-MS. It is concluded that DA-APPI shows the most favorable characteristics for MEKC-MS, especially when compounds of low polarity have to be analyzed.
使用一组包含碱性胺类、甾体类、酯类、苯酮类和一种季铵化合物的测试药物,比较了掺杂剂辅助大气压光电离(DA-APPI)和电喷雾电离(ESI)用于胶束电动色谱(MEKC)与离子阱质谱(ITMS)联用的性能。通过将样品通过毛细管电泳(CE)毛细管注入各自的离子源,研究了表面活性剂十二烷基硫酸钠(SDS)对分析物信号的影响。研究发现,在10 mM磷酸钠(pH 7.5)中含有20 - 50 mM SDS的背景电解质(BGEs)会导致ESI-MS中极性和非极性化合物的主要电离抑制,而APPI-MS信号强度在很大程度上不受影响。ESI会导致SDS簇的形成,这偶尔可能会在离子阱中引起空间电荷效应。此外,在ESI-MS中观察到中等极性化合物广泛形成钠加合物,而这些化合物通过APPI-MS检测为质子化分子。对于碱性胺类,使用含有20 mM SDS的BGE时,MEKC-ESI-MS的检测限(LODs)(2.6 - 3.1 microM)仍略低于MEKC-APPI-MS(4.3 - 6.4 microM)。对于极性较小的化合物,使用APPI-MS检测可获得最高的信噪比(LODs,4.5 - 71 microM)。对于含有50 mM SDS的BGEs,对于几乎所有测试药物,MEKC-APPI-MS的检测限比MEKC-ESI-MS更有利(1.5 - 12倍)。DA-APPI-MS中SDS对喷雾屏蔽的污染低于ESI-MS。得出的结论是,DA-APPI对MEKC-MS显示出最有利的特性,特别是在必须分析低极性化合物时。