首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Capillary liquid chromatography-microcoil H-1 nuclear magnetic resonance spectroscopy and liquid chromatography-ion trap mass spectrometry for on-line structure elucidation of isoflavones in Radix astragali
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Capillary liquid chromatography-microcoil H-1 nuclear magnetic resonance spectroscopy and liquid chromatography-ion trap mass spectrometry for on-line structure elucidation of isoflavones in Radix astragali

机译:毛细管液相色谱-微线圈H-1核磁共振波谱和液相色谱-离子阱质谱法在线研究黄芪中异黄酮的结构

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Miniaturization and hyphenation of chromatographic separation techniques to nuclear magnetic resonance spectroscopy is being increasingly demanded in the field of biomedical, drug metabolite and natural product analysis. Herein, capillary liquid chromatography was coupled on-line to microcoil H-1 nuclear magnetic resonance spectroscopy (capLC-NMR) equipped with a 1.5 mu L solenoidal probe for structure elucidation of isoflavones in Radix astragali. The extract was screened by HPLC-UV-MS as the preliminary step and four major peaks were identified tentatively by ion trap mass spectrometry molecular weights and characteristic fragments. Then, stopped-flow capLC-UV-NMR was performed using 33 mu g extract injected on-column. The four peaks were parked manually in the micro probe one by one and corresponding H-1 NMR spectra were recorded with good resolutions under the applied capLC-NMR conditions (120 and 220 ng injected on-column for peaks 2 and 4, respectively). All aromatic regions of H-1 NMR spectra correlated well to the characteristic signals of isoflavone aglycone protons. And the signal corresponding to the anomeric proton of the glucopyranoside of isoflavone glycoside was also obtained for peak 1. Therefore, these four peaks are determined as calycosin-7-O-beta-D-glucopyranoside (1), ononin (2), calycosin (3) and formononetin (4) unambiguously. The capLC-NMR results indicate that this hyphenated technique could be used for the determination of a great variety of natural products from small sample amounts, e.g., only 5 g R. astragali in this study. (c) 2005 Elsevier B.V. All rights reserved.
机译:在生物医学,药物代谢物和天然产物分析领域中,色谱分离技术对核磁共振谱的小型化和联用正变得越来越需要。在这里,毛细管液相色谱在线耦合到微线圈H-1核磁共振波谱(capLC-NMR)配备1.5μL螺线管探针,用于阐明黄芪中异黄酮的结构。通过HPLC-UV-MS筛选提取物作为初步步骤,并通过离子阱质谱分析分子量和特征片段初步确定了四个主要峰。然后,使用33μg柱上进样的萃取液进行停流capLC-UV-NMR。将四个峰一个接一个地手动停在微探针中,并在所应用的capLC-NMR条件下(分别对峰2和4分别在柱上注入120和220 ng)以良好的分辨率记录了相应的H-1 NMR谱图。 H-1 NMR光谱的所有芳族区域与异黄酮苷元质子的特征信号相关性很好。并且还获得了峰1对应于异黄酮苷的吡喃葡萄糖苷异头质子的信号。因此,确定这四个峰为calycosin-7-O-β-D-吡喃葡萄糖苷(1),ononin(2),calycosin (3)和formononetin(4)明确。 capLC-NMR结果表明,该联用技术可用于从少量样品(例如本研究中仅5 g黄芪)中测定多种天然产物。 (c)2005 Elsevier B.V.保留所有权利。

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