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Determination of Niacin and Its Metabolites Using Supercritical Fluid Chromatography Coupled to Tandem Mass Spectrometry

机译:超临界液相色谱-串联质谱法测定烟酸及其代谢物

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摘要

Niacin, a water-soluble vitamin belonging to the vitamin B group, has been known to cause various problems in the human body when deficient. The vitamin is derived from the diet and afterwards, niacin and its metabolites are secreted in blood or urine. It can be analyzed using liquid chromatography (LC) coupled to mass spectrometry, but niacin and its metabolites are very polar compounds. Recently, supercritical fluid chromatography (SFC) is gaining attention for polar compound analysis. To our best knowledge, the report on the analysis of endogenous-very hydrophilic metabolites in biofluids by SFC has not been found. In this study, we investigated whether the separation of hydrophilic metabolites in biofluids is achievable by SFC. In addition, we also examined the applicability of SFC coupled to MS in extrapolating unknown metabolites by means of spectra information. As a result, an analysis method to quantify the target compounds using SFC/MS/MS was constructed for niacin and its metabolites. Additional putative metabolites from niacin were also identified using the MS fragmentation spectra in plasma and urine. Consequently, the method using SFC/MS/MS allowed for the analysis of polar compounds with low log P ranging from −3.7 to 0.29. This study is the first report of the separation of niacin and its seven metabolites in human urine and these results showed that SFC-MS/MS can be an alternative technique for hydrophilic metabolite analysis.
机译:烟酸是一种属于维生素B类的水溶性维生素,已知缺乏时会在人体中引起各种问题。维生素是从饮食中提取的,然后烟酸及其代谢产物会分泌到血液或尿液中。可以使用液相色谱(LC)结合质谱进行分析,但烟酸及其代谢物是极性很高的化合物。近来,超临界流体色谱(SFC)在极性化合物分析中引起了人们的注意。据我们所知,尚未找到有关通过SFC分析生物流体中内源性非常亲水的代谢产物的报告。在这项研究中,我们调查了SFC是否可以实现生物流体中亲水代谢物的分离。此外,我们还通过光谱信息检查了SFC与MS联用在推断未知代谢物时的适用性。结果,针对烟酸及其代谢物建立了一种使用SFC / MS / MS定量分析目标化合物的分析方法。还使用血浆和尿液中的MS碎片质谱鉴定了来自烟酸的其他推定代谢物。因此,使用SFC / MS / MS的方法可以分析loglogP在-3.7至0.29之间的低极性化合物。这项研究是人类尿液中烟酸及其七种代谢物分离的首次报道,这些结果表明,SFC-MS / MS可以作为亲水性代谢物分析的另一种技术。

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