Department of Biomolecular Analysis, Utrecht University, Utrecht, The Netherlands.
Electrophoresis. 2011 Nov;32(21):3016-24. doi: 10.1002/elps.201100271. Epub 2011 Oct 17.
Analyte responses in CE-ESI-MS using negative ionization are frequently relatively low, thereby limiting sensitivity in metabolomics applications. In order to enhance the ionization efficiency of anionic metabolites, BGEs and sheath liquids (SLs) of various compositions were evaluated. Pressure-induced infusion and CE-MS experiments showed that addition of triethylamine (TEA) to the BGE and SL enhanced analyte intensities. A BGE consisting of 25 mM TEA (pH 11.7) and an SL of water-methanol (1:1, v/v) containing 5 mM TEA was selected, providing separation and detection of ten representative test metabolites with good reproducibility (migration time RSDs<1%) and linearity (R(2) >0.99). This BGE yielded lower limits of detection (0.7-9.1 μM) for most test compounds when compared with common CE-MS methods using a BGE and SL containing ammonium acetate (NH(4) Ac) (25 and 5 mM, respectively). CE-MS of human urine revealed an average amount of 231 molecular features in negative ionization mode when TEA was used in the BGE and SL, whereas 115 and 102 molecular features were found with an NH(4) Ac-containing BGE and SL, employing a bare fused-silica (BFS) and Polybrene-dextran sulfate-Polybrene (PB-DS-PB)-coated capillary, respectively. With the CE-MS method using TEA, about 170 molecular features were observed that were not detected with the NH(4) Ac-based CE-MS methods. For more than 82% of the molecular features that were detected with the TEA as well as the NH(4) Ac-containg BGEs (i.e. common features), the peak intensities were higher using TEA with gain factors up to 7. Overall, the results demonstrate that BGEs and SLs containing TEA are quite favorable for the analysis of anionic metabolites in CE-MS.
在 CE-ESI-MS 中,采用负离子模式时分析物的响应通常相对较低,从而限制了代谢组学应用中的灵敏度。为了提高阴离子代谢物的离子化效率,评估了各种组成的 BGE 和鞘液 (SL)。压力诱导进样和 CE-MS 实验表明,在 BGE 和 SL 中添加三乙胺 (TEA) 可增强分析物的强度。选择了由 25 mM TEA(pH 11.7)组成的 BGE 和包含 5 mM TEA 的水-甲醇 (1:1,v/v) 的 SL,可实现十种代表性测试代谢物的分离和检测,具有良好的重现性 (迁移时间 RSDs<1%) 和线性 (R(2)>0.99)。与使用含有乙酸铵 (NH(4)Ac)(分别为 25 和 5 mM)的 BGE 和 SL 的常见 CE-MS 方法相比,这种 BGE 为大多数测试化合物提供了更低的检测限 (0.7-9.1 μM)。当在 BGE 和 SL 中使用 TEA 时,CE-MS 以负离子模式检测到尿液中的平均 231 个分子特征,而使用含有 NH(4)Ac 的 BGE 和 SL 时分别检测到 115 和 102 个分子特征,分别采用裸熔融石英 (BFS) 和聚阴离子硫酸葡聚糖-聚阴离子硫酸葡聚糖-聚阴离子硫酸葡聚糖 (PB-DS-PB)-涂层毛细管。使用 TEA 的 CE-MS 方法可观察到约 170 个 NH(4)Ac 基 CE-MS 方法未检测到的分子特征。对于 TEA 和 NH(4)Ac 中检测到的分子特征 (即常见特征) 的超过 82%,使用 TEA 的峰强度更高,增益因子高达 7。总体而言,结果表明,含有 TEA 的 BGE 和 SL 非常有利于 CE-MS 中阴离子代谢物的分析。