Department of Chemistry and Biochemistry, Saint Louis University, 3501 Laclede Ave, Saint Louis, MO 63102, USA.
Cardiovascular Comprehensive Care Center, Saint Louis University, 3635 Vista Ave, St Louis, MO, USA.
J Chromatogr A. 2018 Sep 14;1567:219-225. doi: 10.1016/j.chroma.2018.07.007. Epub 2018 Jul 4.
Analysis of metabolites is often performed using separations coupled to mass spectrometry which is challenging due to their vast structural heterogeneity and variable charge states. Metabolites are often separated based on their class/functional group which in large part determine their acidity or basicity. This charge state dictates the ionization mode and efficiency of the molecule. To improve the sensitivity and expand the coverage of the mammalian metabolome, multifunctional derivatization with sheathless CE-ESI-MS was undertaken. In this work, amines, hydroxyls and carboxylates were labeled with tertiary amines tags. This derivatization was performed in under 100 min and resulted in high positive charge states for all analytes investigated. Amino acids and organic acids showed average limits of detection of 76 nM with good linearity of 0.96 and 10% RSD for peak area. Applying this metabolomic profiling system to bovine aortic endothelial cells showed changes in 15 metabolites after treatment with high glucose. The sample injection volume on-capillary was <300 cells for quantitative analyses. Targeted metabolites were found in human tissue, which indicates possible application of the system complex metabolome quantitation.
代谢物的分析通常使用与质谱联用的分离方法来进行,由于其结构的巨大异质性和可变的电荷状态,这具有一定的挑战性。代谢物通常根据其类别/官能团进行分离,这在很大程度上决定了它们的酸碱性。这种电荷状态决定了分子的电离模式和效率。为了提高哺乳动物代谢组的灵敏度和覆盖范围,采用无鞘 CE-ESI-MS 进行了多功能衍生化。在这项工作中,胺、羟基和羧基被三烷基胺标签标记。这种衍生化在 100 分钟内完成,所有被研究的分析物都呈现出高正电荷状态。氨基酸和有机酸的平均检测限为 76nM,峰面积的线性度良好,为 0.96 和 10%RSD。将这种代谢组学分析系统应用于牛主动脉内皮细胞,在高葡萄糖处理后显示出 15 种代谢物的变化。用于定量分析的毛细管内进样体积<300 个细胞。在人体组织中发现了目标代谢物,这表明该系统有可能用于复杂代谢物的定量分析。