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首页> 外文期刊>Journal of mass spectrometry: JMS >Energy-resolved technique for discovery and identification of malonyl-triterpene saponins in Caulophyllum robustum by UHPLC-electrospray Fourier transform mass spectrometry
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Energy-resolved technique for discovery and identification of malonyl-triterpene saponins in Caulophyllum robustum by UHPLC-electrospray Fourier transform mass spectrometry

机译:能量分辨技术通过UHPLC-电喷雾傅里叶变换质谱法在强壮龙胆中丙二酰三萜皂苷的发现和鉴定

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Malonyl-triterpene saponins (MTSs) attract scientific attentions because of their structural diversities and valuable bioactivities. However, its thermal instability brings a huge amount of challenges for isolation and purification of this class of compounds. To our best knowledge, there has been no report on isolation and analysis of MTSs from genus Caulophyllum. In this study, a strategy combining data acquisition using an energy-resolved technique and the narrow widow extracted ion chromatograms as data mining method was developed for discovery and identification of MTSs in Caulophyllum robustum hair roots by ultra high liquid chromatography coupled to electrospray ionization Fourier transform mass spectrometry. The method was performed at an independent MS full scan using our bottom-up energies by in-source collision induced dissociations with 0, 25, 50 and 100eV in both positive and negative modes. Precursor ion as well as fragment ion information was simultaneously collected from four energy-resolved MS spectra in a single run of 18min. The fragmentation pathways of intact deprotonated, protonated and sodium ions of MTSs were proposed for the structural elucidation of Caulophyllum MTSs. A flowchart involving a stepwise procedure based on key fragments from ESI-/ESI+-FT-MS(1, 1) to MS(1, 4) spectra was constructed for the identification of structural elements in the MTSs. As a result, a total of 23 MTSs were discovered and tentatively identified, which had not been reported from Caulophyllum species before. All of these were potentially new compounds. This study provides an excellent example for discovery and identification of MTSs in herb medicines. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:丙二酰基三萜皂苷(MTS)由于其结构多样性和有价值的生物活性而引起了科学的关注。然而,其热不稳定性为这类化合物的分离和纯化带来了巨大的挑战。据我们所知,目前还没有关于分离和分析自Caulophyllum属中的MTS的报告。在这项研究中,开发了一种结合能量分辨技术和窄寡妇提取离子色谱图作为数据挖掘方法的数据挖掘策略,用于通过超高液相色谱-电喷雾电离傅里叶变换发现和鉴定罗汉果发根中的MTS。质谱。该方法是在独立的MS全扫描中使用我们的自下而上的能量通过正负模式下的源内碰撞诱导的0、25、50和100eV解离而进行的。在18分钟的单次运行中同时从四个能量分辨的MS光谱中同时收集前体离子和碎片离子信息。提出了完整的去质子化,质子化和钠离子的碎裂途径,以用于拟南芥MTS的结构阐明。构造了一个流程图,该流程图涉及基于ESI- / ESI + -FT-MS(1,1)到MS(1,4)谱图的关键片段的逐步过程,用于识别MTS中的结构元素。结果,总共发现并初步鉴定出23种MTS,这在以前从未有报道。所有这些都是潜在的新化合物。这项研究为发现和鉴定草药中的MTS提供了一个极好的例子。版权所有(c)2016 John Wiley&Sons,Ltd.

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