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UPLC-Q-TOF-MS/MS 分析反复蒸制对西洋参蒸制时间依赖性特征图谱及其人参皂苷转化的影响。

UPLC-Q-TOF-MS/MS Analysis for Steaming Times-dependent Profiling of Steamed Panax quinquefolius and Its Ginsenosides Transformations Induced by Repetitious Steaming.

机构信息

College of Chemistry, Taizhou University, Linhai 317000, China ; Department of Food Science and Technology, College of Agriculture and Biotechnology, Chungnam National University, Daejeon 305-764, Korea.

出版信息

J Ginseng Res. 2012 Jul;36(3):277-90. doi: 10.5142/jgr.2012.36.3.277.

Abstract

The metabolic profiles of Panax quinquefolius and its associated therapeutic values are critically affected by the repetitious steaming times. The times-dependent steaming effect of P. quinquefolius is not well-characterized and there is also no official guideline on its times of steaming. In this paper, a UPLC-Q-TOF-MS/MS method was developed for the qualitative profiling of multi-parametric metabolic changes of raw P. quinquefolius during the repetitious steaming process. Our method was successful in discriminating the differentially multi-steamed herbs. Meantime, the repetitious steaming-inducing chemical transformations in the preparation of black American ginseng (American ginseng that was subjected to 9 cycles of steaming treatment) were evaluated by this UPLC-Q-TOF-MS/MS based chemical profiling method. Under the optimized UPLC-Q-TOF-MS/MS conditions, 29 major ginsenosides were unambiguously identified and/or tentatively assigned in both raw and multi-steamed P. quinquefolius within 19 min, among them 18 ginsenosides were detected to be newly generated during the preparatory process of black American ginseng. The mechanisms involved were further deduced to be hydrolysis, dehydration, decarboxylation and addition reactions of the original ginsenosides in raw P. quinquefolius through analyzing mimic 9 cycles of steaming extracts of 14 pure reference ginsenosides. Our novel steaming times-dependent metabolic profiling approach represents the paradigm shift in the global quality control of multi-steamed P. quinquefolius products.

摘要

反复蒸制时间会极大地影响西洋参的代谢特征及其相关的治疗价值。西洋参的蒸制时间依赖性效应尚未得到很好的描述,其蒸制次数也没有官方指南。在本文中,我们开发了一种 UPLC-Q-TOF-MS/MS 方法,用于定性分析生西洋参在反复蒸制过程中的多参数代谢变化。我们的方法成功地区分了不同蒸制次数的西洋参。同时,我们还通过这种基于 UPLC-Q-TOF-MS/MS 的化学特征图谱方法,评估了重复蒸制诱导的炮制过程中黑西洋参(经过 9 次蒸制处理的西洋参)的化学转化。在优化的 UPLC-Q-TOF-MS/MS 条件下,在 19 分钟内,我们在生西洋参和多蒸西洋参中均能明确地识别和/或推断出 29 种主要的人参皂苷,其中 18 种人参皂苷在黑西洋参的炮制过程中被检测到是新生成的。通过分析 14 种纯人参皂苷模拟的 9 次蒸制提取物,我们进一步推断出这些反应涉及到原始人参皂苷的水解、脱水、脱羧和加成反应。我们的新型蒸制时间依赖性代谢特征图谱方法代表了多蒸制西洋参产品全球质量控制的范式转变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/03ff/3659595/e3f0a1eb44ba/grosbr-36-277-g001.jpg

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