Biomolecular Mass Spectrometry Unit, Department of Parasitology, Leiden University Medical Center, Leiden, The Netherlands.
Anal Chem. 2012 Jan 17;84(2):885-92. doi: 10.1021/ac202407v. Epub 2011 Dec 30.
Sheathless capillary electrophoresis-mass spectrometry (CE-MS), using a porous tip sprayer, is proposed for the first time for highly sensitive metabolic profiling of human urine. A representative metabolite mixture and human urine were used for evaluation of the sheathless CE-MS platform. For test compounds, relative standard deviations (RSDs) for migration times and peak areas were below 2% and 12%, respectively, and an injection volume of only ∼8 nL resulted in detection limits between 11 and 120 nM. Approximately 900 molecular features were detected in human urine by sheathless CE-MS whereas about 300 molecular features were found with classical sheath-liquid CE-MS. This difference can probably be attributed to an improved ionization efficiency and increased sensitivity at low flow-rate conditions. The integration of transient-isotachophoresis (t-ITP) as an in-capillary preconcentration procedure in sheathless CE-MS further resulted in subnanomolar limits of detection for compounds of the metabolite mixture, and more than 1300 molecular features were observed in urine. Compared to the classical CE-MS approaches, the integration of t-ITP combined with the use of a sheathless interface provides up to 2 orders of magnitude sensitivity improvement. Hence, sheathless CE-MS can be used for in-depth metabolic profiling of biological samples, and we anticipate that this approach will yield unique information in the field of metabolomics.
无鞘毛细管电泳-质谱联用(CE-MS),采用多孔尖端喷雾器,首次被提出用于高度敏感的人体尿液代谢物分析。我们使用了代表性的代谢混合物和人体尿液来评估无鞘 CE-MS 平台。对于测试化合物,迁移时间和峰面积的相对标准偏差(RSD)分别低于 2%和 12%,并且仅需约 8 nL 的进样体积,检测限在 11 到 120 nM 之间。通过无鞘 CE-MS 可以检测到人体尿液中的约 900 个分子特征,而通过经典鞘液 CE-MS 可以检测到约 300 个分子特征。这种差异可能归因于在低流速条件下改善了离子化效率和提高了灵敏度。在无鞘 CE-MS 中,瞬态等速电泳(t-ITP)作为一种在毛细管内的浓缩程序的整合,进一步使得代谢混合物中化合物的检测限达到亚纳摩尔水平,并且在尿液中观察到超过 1300 个分子特征。与经典 CE-MS 方法相比,t-ITP 的整合与无鞘接口的使用相结合,提供了高达 2 个数量级的灵敏度提高。因此,无鞘 CE-MS 可用于深入分析生物样本的代谢物,并预计该方法将在代谢组学领域提供独特的信息。