Ramautar Rawi, Nevedomskaya Ekaterina, Mayboroda Oleg A, Deelder André M, Wilson Ian D, Gika Helen G, Theodoridis Georgios A, Somsen Govert W, de Jong Gerhardus J
Department of Biomedical Analysis, Utrecht University, Sorbonnelaan 16, PO Box 80082, 3508 TB Utrecht, The Netherlands.
Mol Biosyst. 2011 Jan;7(1):194-9. doi: 10.1039/c0mb00032a. Epub 2010 Nov 5.
The potential of capillary electrophoresis time-of-flight mass spectrometry (CE-TOF-MS) using capillaries coated with a triple layer of polybrene-dextran sulfate-polybrene (PB-DS-PB) was evaluated for metabolic profiling of human urine. The method covers various metabolite classes and stable metabolic profiles of urine samples were obtained with favourable migration time repeatability (RSDs <1%). The PB-DS-PB CE-TOF-MS method was used for the analysis of human urine samples from 30 males and 30 females, which had been previously analyzed by reversed-phase UPLC-TOF-MS. Multivariate data analysis of the obtained data provided clear distinction between urine samples from males and females, emphasizing gender differences in metabolic signatures. Nearly all compounds responsible for male-female classification in CE-TOF-MS were different from the classifying compounds in UPLC-TOF-MS. Almost all compounds causing classification in the CE-TOF-MS study were highly polar and did not exhibit retention in the reversed-phase UPLC system. In addition, the CE-TOF-MS classifiers had an m/z value in the range of 50-150, whereas 95% of the classifying features found with UPLC-TOF-MS had an m/z value above 150. The CE-TOF-MS method therefore appears to be highly complementary to the UPLC-TOF-MS method providing classification based on different classes of metabolites.
评估了使用涂有聚凝胺-硫酸葡聚糖-聚凝胺(PB-DS-PB)三层的毛细管的毛细管电泳飞行时间质谱(CE-TOF-MS)用于人尿液代谢谱分析的潜力。该方法涵盖了各种代谢物类别,并且获得了尿液样品稳定的代谢谱,迁移时间重复性良好(相对标准偏差<1%)。PB-DS-PB CE-TOF-MS方法用于分析30名男性和30名女性的人尿液样品,这些样品之前已通过反相超高效液相色谱-飞行时间质谱(UPLC-TOF-MS)进行过分析。对所得数据进行多变量数据分析,结果显示男性和女性的尿液样品有明显区别,突出了代谢特征方面的性别差异。CE-TOF-MS中几乎所有用于区分男性和女性的化合物都与UPLC-TOF-MS中的分类化合物不同。CE-TOF-MS研究中几乎所有导致分类的化合物都是高极性的,在反相UPLC系统中不保留。此外,CE-TOF-MS分类器的质荷比(m/z)值在50-150范围内,而UPLC-TOF-MS发现的95%的分类特征的m/z值高于150。因此,CE-TOF-MS方法似乎与UPLC-TOF-MS方法具有高度互补性,可基于不同类别的代谢物进行分类。