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Simultaneous Profiling and Holistic Comparison of the Metabolomes among the Flower Buds of Panax ginseng Panax quinquefolius and Panax notoginseng by UHPLC/IM-QTOF-HDMSE-Based Metabolomics Analysis

机译:基于UHPLC / IM-QTOF-HDMSE的代谢组学分析同时分析人参西洋参和三七花蕾中花蕾的代谢组

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摘要

The flower buds of three Panax species (PGF: flower bud of P. ginseng; PQF: flower bud of P. quinquefolius; PNF: flower bud of P. notoginseng), widely consumed as healthcare products, are easily confused particularly in the extracts or traditional Chinese medicine (TCM) formulae. We are aimed to develop an untargeted metabolomics approach, by ultra-high performance liquid chromatography/ion mobility-quadrupole time-of-flight mass spectrometry (UHPLC/IM-QTOF-MS) to unveil the chemical markers diagnostic for the differentiation of PGF, PQF, and PNF. Key parameters affecting chromatographic separation and MS detection were optimized in sequence. Forty-two batches of flower bud samples were analyzed in negative high-definition MSE (HDMSE; enabling three-dimensional separations). Efficient metabolomics data processing was performed by Progenesis QI (Waters, Milford, MA, USA), while pattern-recognition chemometrics was applied for species classification and potential markers discovery. Reference compounds comparison, analysis of both HDMSE and targeted MS/MS data, and retrieval of an in-house ginsenoside library, were simultaneously utilized for the identification of discovered potential markers. Satisfactory conditions for metabolite profiling were achieved on a BEH Shield RP18 column and Vion™ IMS-QTOF instrument (Waters; by setting the capillary voltage of 1.0 kV and the cone of voltage 20 V) within 37 min. A total of 32 components were identified as the potential markers, of which Rb3, Ra1, isomer of m-Rc/m-Rb2/m-Rb3, isomer of Ra1/Ra2, Rb1, and isomer of Ra3, were the most important for differentiating among PGF, PQF, and PNF. Conclusively, UHPLC/IM-QTOF-MS-based metabolomics is a powerful tool for the authentication of TCM at the metabolome level.
机译:广泛用作保健品的三种人参(PGF:人参的花蕾; PQF:西洋参的花蕾; PNF:三七的花蕾)的花蕾容易混淆,特别是在提取物中或中药配方。我们旨在通过超高效液相色谱/离子淌度-四极杆飞行时间质谱(UHPLC / IM-QTOF-MS)开发一种非目标代谢组学方法,以揭示可诊断PGF的化学标记, PQF和PNF。依次优化了影响色谱分离和质谱检测的关键参数。在负高清MS E (HDMS E ;可进行三维分离)中分析了42批花蕾样品。有效的代谢组学数据处理由Progenesis QI(Waters,Milford,MA,USA)进行,而模式识别化学计量学则用于物种分类和潜在的标记物发现。同时利用参考化合物的比较,HDMS E 和目标MS / MS数据的分析以及内部人参皂苷文库的检索来鉴定发现的潜在标记。在BEH Shield RP18色谱柱和Vion™IMS-QTOF仪器(沃特世;通过设置1.0 kV的毛细管电压和20 V的电压锥)上达到了令人满意的代谢物分析条件。总共鉴定出32种成分作为潜在标记,其中Rb3,Ra1,m-Rc / m-Rb2 / m-Rb3的异构体,Ra1 / Ra2,Rb1的异构体和Ra3的异构体是最重要的标记。区分PGF,PQF和PNF。总之,基于UHPLC / IM-QTOF-MS的代谢组学是在代谢组水平上验证中药的强大工具。

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