首页> 外文期刊>Journal of mass spectrometry: JMS >Mass spectrometric profiling of valepotriates possessing various acyloxy groups from Valeriana jatamansi
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Mass spectrometric profiling of valepotriates possessing various acyloxy groups from Valeriana jatamansi

机译:缬草中具有各种酰氧基的戊三酸酯的质谱分析

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摘要

Valepotriates, plant secondary metabolites of the family Valerianaceae, contain various acyloxy group linkages to the valepotriate nucleus and exhibit significant biological activities. Identification of valepotriates is important to uncover potential lead compounds for the development of new sedative and antitumor drugs. However, making their structure elucidation by nuclear magnetic resonance (NMR) experiments is too difficult to be realized because of the overlapped carbonyl carbon signals of acyloxy groups substituted at different positions. Thus, the mass spectrometric profiling of these compounds in positive ion mode was developed to unveil the exact linkage of acyloxy group and the core of valepotriate. In this study, electrospray ionization tandem multistage mass spectrometry (ESI-MS/MSn) in ion trap and collision-induced dissociation tandem MS were used to investigate the fragmentation pathways of four types of valepotriates in Valeriana jatamansi, including 5-hydroxy-5,6-dihydrovaltrate hydrin (5-hydroxy-5,6-dihydrovaltrate chlorohydrin), 5,6-dihydrovaltrate hydrin (5,6-dihydrovaltrate chlorohydrin), 5-hydroxy-5,6-dihydrovaltrate and valtrate hydrin (valtrate chlorohydrin). The high-resolution mass spectrum (HRMS) data of all the investigated valepotriates from quadrupole time-of-flight MS/MS were used as a supportive of the fragmentation rules we hypothesized from ion-trap stepwise MSn. As a result, the loss sequence of acyloxy groups and the abundance of key product ions, in combination with the characteristic product ions corresponding to the valepotriate nucleus, could readily differentiate the four different types of valepotriates. The summarized fragmentation rules were also successfully exploited for the structural characterization of three new trace valepotriates from V.jatamansi. The results indicated that the developed analytical method could be employed as a rapid, effective technique for structural characterization of valepotriates, especially for the trace compounds that could not be identified by NMR techniques. This study may also arouse interest for further structural analysis of other valepotriate-containing type herbal medicines. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:戊戊酸酯,缬草科的植物次生代谢产物,含有与戊戊酸酯核的各种酰氧基连接,并具有重要的生物学活性。戊三酸酯的鉴定对于发现潜在的先导化合物对于开发新的镇静剂和抗肿瘤药很重要。但是,由于在不同位置被取代的酰氧基的羰基碳信号重叠,因此难以通过核磁共振(NMR)实验阐明其结构。因此,开发了这些化合物在正离子模式下的质谱分析,以揭示酰氧基与戊三酸酯核心的确切联系。在这项研究中,电喷雾串联电离串联质谱(ESI-MS / MSn)在离子阱和碰撞诱导解离串联质谱中用于研究缬草中四种类型的戊三酸酯的裂解途径,包括5-羟基-5, 6-二氢戊酸酯醇(5-羟基-5,6-二氢戊酸酯氯醇),5,6-二氢戊酸酯醇(5,6-二氢戊酸酯氯醇),5-羟基-5,6-二氢戊酸酯和戊酸酯醇(戊酸酯氯醇)。来自四极杆飞行时间MS / MS的所有研究的戊酸酯的高分辨率质谱(HRMS)数据均被用作我们从离子阱逐步MSn假设的碎裂规则的支持。结果,酰氧基的丢失序列和关键产物离子的丰度,与对应于戊三酸酯核的特征产物离子结合,可以很容易地区分四种不同类型的戊三酸酯。总结的断裂规则也被成功地用于V.jatamansi的三种新的痕量古植物的结构表征。结果表明,所开发的分析方法可作为一种快速有效的方法用于戊三酸酯的结构表征,尤其是对于那些无法通过NMR技术鉴定的痕量化合物。这项研究也可能引起对其他含戊三酸酯类草药的进一步结构分析的兴趣。版权所有(c)2015 John Wiley&Sons,Ltd.

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