首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >A novel neutral loss/product ion scan-incorporated integral approach for the untargeted characterization and comparison of the carboxyl-free ginsenosides from Panax ginseng, Panax quinquefolius, and Panax notoginseng
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A novel neutral loss/product ion scan-incorporated integral approach for the untargeted characterization and comparison of the carboxyl-free ginsenosides from Panax ginseng, Panax quinquefolius, and Panax notoginseng

机译:一种新的中性损失/产物离子扫描的整体方法,用于从Panax人参,Panax奎因斯和Panax Noginseng的无创羧酸人参苷的无限性表征和比较

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摘要

Differentiated composition in precursor ions for different subclasses of ginsenosides in the negative electrospray-ionization mode has been reported, which lays a foundation for the sorted and untargeted identification of ginsenosides. Carboxyl-free ginsenosides simultaneously from Panax ginseng, P. quinquefolius, and P. notoginseng, were comprehensively characterized and statistically compared. A neutral loss/product ion scan (NL-PIS) incorporated untargeted profiling approach, coupled to ultra-high performance liquid chromatography, was developed on a linear ion-trap/Orbitrap mass spectrometer for characterizing carboxyl-free ginsenosides. It incorporated in-source fragmentation (ISF) full scan-MS1, mass tag-MS2, and product ion scan-MS3. Sixty batches of ginseng samples were analyzed by metabolomics workflows for the discovery of ginsenoside markers. Using formic acid (FA) as the additive, carboxyl-free ginsenosides (protopanaxadiol-type, protopanaxatriol-type, and octillol-type) gave predominant FA-adducts, while rich deprotonated molecules were observed for carboxyl-containing ginsenosides (oleanolic acid-type and malonylated) when source-induced dissociation (SID) was set at 0 V. Based on the NL transition [M+FA-H](-) > [M H](-) and the characteristic sapogenin product ions, a NL-PIS approach was established. It took advantage of the efficient full-information acquisition of ISF-MS1 (SID: 50 V), the high specificity of mass tag (NL: 46.0055 Da)-induced MS2 fragmentation, and the substructure fragmentation of product ion scan-MS3. We could characterize 216 carboxyl-free ginsenosides, and 21 thereof were potentially diagnostic for the species differentiation. Conclusively, sorted and untargeted characterization of the carboxyl-free ginsenosides was achieved by the established NL-PIS approach. In contrast to the conventional NL or PIS-based survey scan strategies, the high-accuracy MSn data obtained can enable more reliable identification of ginsenosides. (C) 2019 Elsevier B.V. All rights reserved.
机译:在前体离子在负电​​喷雾离子化模式的人参皂甙不同的子类区分组合物已被报道,为进一步研究人参皂甙的排序和非目标识别的基础。同时从人参,西洋参以及三七羧基 - 自由人参皂苷,进行了全面表征和统计学比较。中性丢失/产物离子扫描(NL-PIS)并入非靶向分析方法中,耦接至超高效液相色谱,于线性离子阱/轨道阱质谱仪用于表征无羧基人参皂甙显影。它结合在源内裂解(ISF)全扫描-MS1,质量标记,MS2,和产物离子扫描-MS3。人参样品六十批次被代谢组学工作流程人参标志物的发现进行分析。使用甲酸(FA)作为添加剂,游离羧基的人参皂甙(原人参二醇型,原人参萜三醇型,和octillol型),得到主要的FA-加合物,而观察到对含羧基的人参皂甙富去质子化的分子(齐墩果酸型和malonylated)当源诱导解离(SID)中的溶液在NL过渡设为0V基于[M + FA-H]( - )> [MH]( - )和特性皂苷元产物离子,NL-PIS成立做法。花ISF-MS1的有效全信息取得的优点(SID:50 V),质量标签的高特异性(NL:46.0​​055沓)诱导MS2碎裂,和产物离子扫描-MS3的子分片。我们可以表征216无羧基的人参皂甙,和21上分别潜在地诊断为物种分化。确凿,分类无羧基人参的非靶向特性是由成立NL-PIS方法实现的。在与传统的NL或基于PIS-调查扫描策略,所获得的高精确度的质谱数据可以使得人参皂甙的更可靠的识别。 (c)2019 Elsevier B.v.保留所有权利。

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