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首页> 外文期刊>Biomedical Chromatography: An International Journal Devoted to Research in Chromatographic Methodologies and Their Applications in the Biosciences >Analysis of chemical variations between raw and wine-processed Ligustri Lucidi Fructus by ultra-high-performance liquid chromatography-Q-Exactive Orbitrap/MS combined with multivariate statistical analysis approach
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Analysis of chemical variations between raw and wine-processed Ligustri Lucidi Fructus by ultra-high-performance liquid chromatography-Q-Exactive Orbitrap/MS combined with multivariate statistical analysis approach

机译:超高效液相色谱 - Q-辐射锻工术术 - Q-辐射锻造/ MS与多变量统计分析方法相结合原料和葡萄酒加工Ligustri Lucidi果实的化学变化分析

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摘要

Ligustri Lucidi Fructus (LLF) is the dried and mature fruit of Ligubtrum lucidum Ait., which has the effect of nourishing the liver and kidney, brightening the eyes and promoting the growth of black hair. Wine-processed LLF is commonly used in traditional Chinese medicine; however, the processing mechanisms are still unclear. Herein, a system data acquisition and mining strategy was designed to investigate the chemical profile differences between the raw and wine-processed LLF, based on high-performance liquid chromatography-Orbitrap high resolution mass spectrome-try coupled with multivariate statistical analysis including principal component analysis and partial least square analysis. Afterwars, a total of 55 components were found to be the main contributors to the significant difference between raw and wine-processed LLF by comparison with chromatographic behaviors, intact precursor ions, and characteristic MS fragmentation patterns. In addition, 10 main constituents of raw and wine-processed LLF were simultaneously determined by UHPLC-MS/MS for analyzing the content variations. Some structural transformation mechanisms during wine processing were deduced from the results. The results may provide a scientific foundation for deeply elucidating the wine-processing mechanism of LLF.
机译:Ligustri Lucidi果棒(LLF)是菱形Lucidum Ait的干燥和成熟的果实。,它具有滋养肝肾,增强眼睛并促进黑发生长的效果。葡萄酒加工LLF通常用于中药;但是,处理机制仍然不清楚。这里,系统数据采集和采矿策略旨在研究原始和葡萄酒加工的LLF之间的化学型材差异,基于高性能液相色谱 - 围绕高分辨率质谱 - 试图与包括主成分分析的多变量统计分析相结合和部分最小二乘分析。除了与色谱行为,完整的前体离子和特征MS碎片模式相比,共发现总共55种组分是原始和葡萄酒处理LLF之间的主要贡献。另外,通过UHPLC-MS / MS同时测定10个原料和葡萄酒处理LLF的主要成分,用于分析含量变化。从结果推导出葡萄酒加工过程中的一些结构转变机制。结果可以为深入阐明LLF的葡萄酒加工机制提供科学基础。

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