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首页> 外文期刊>Journal of Ginseng Research >Differentiation and identification of ginsenoside structural isomers by two-dimensional mass spectrometry combined with statistical analysis
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Differentiation and identification of ginsenoside structural isomers by two-dimensional mass spectrometry combined with statistical analysis

机译:二维质谱结合统计分析鉴别人参皂苷结构异构体

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Background In the current phytochemical research on ginseng, the differentiation and structural identification of ginsenosides isomers remain challenging. In this paper, a two-dimensional mass spectrometry (2D-MS) method was developed and combined with statistical analysis for the direct differentiation, identification, and relative quantification of protopanaxadiol (PPD)-type ginsenoside isomers. Methods Collision-induced dissociation was performed at successive collision energy values to produce distinct profiles of the intensity fraction (IF) and ratio of intensity (RI) of the fragment ions. To amplify the differences in tandem mass spectra between isomers, IF and RI were plotted against collision energy. The resulting data distributions were then used to obtain the parameters of the fitted curves, which were used to evaluate the statistical significance of the differences between these distributions via the unpaired t test. Results A triplet and two pairs of PPD-type ginsenoside isomers were differentiated and identified by their distinct IF and RI distributions. In addition, the fragmentation preference of PPD-type ginsenosides was determined on the basis of the activation energy. The developed 2D-MS method was also extended to quantitatively determine the molar composition of ginsenoside isomers in mixtures of biotransformation products. Conclusion In comparison with conventional mass spectrometry methods, 2D-MS provides more direct insights into the subtle structural differences between isomers and can be used as an alternative approach for the differentiation of isomeric ginsenosides and natural products.
机译:背景技术在当前的人参植物化学研究中,人参皂苷异构体的分化和结构鉴定仍然具有挑战性。本文开发了一种二维质谱(2D-MS)方法,并将其与统计分析相结合,以直接区分,鉴定和相对定量的原人参二醇(PPD)型人参皂苷异构体。方法以连续的碰撞能量值进行碰撞诱导解离,以产生碎片离子的强度分数(IF)和强度比(RI)的不同曲线。为了放大异构体之间串联质谱的差异,绘制了IF和RI与碰撞能的关系图。然后,将所得的数据分布用于获得拟合曲线的参数,这些参数用于通过未配对t检验评估这些分布之间差异的统计显着性。结果通过三联体和两对PPD型人参皂苷异构体,通过其独特的IF和RI分布进行区分和鉴定。另外,基于活化能确定PPD型人参皂苷的片段化偏好。还扩展了开发的2D-MS方法,以定量确定生物转化产物混合物中人参皂苷异构体的摩尔组成。结论与传统的质谱方法相比,二维质谱可更直接地了解异构体之间的细微结构差异,并可作为区分人参皂苷和天然产物的另一种方法。

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