首页> 美国卫生研究院文献>Molecules >Comparative Investigation for Rotten Xylem (kuqin) and Strip Types (tiaoqin) of Scutellaria baicalensis Georgi Based on Fingerprinting and Chemical Pattern Recognition
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Comparative Investigation for Rotten Xylem (kuqin) and Strip Types (tiaoqin) of Scutellaria baicalensis Georgi Based on Fingerprinting and Chemical Pattern Recognition

机译:基于指纹图谱和化学模式识别的黄S基腐烂木质部(kuqin)和条状类型(tiaoqin)的比较研究

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摘要

Scutellaria baicalensis Georgi (SBG) is not just as a traditional herbal medicine but also a popular functional food in China and other Asian countries. A sensitive simple strategy was developed for the first time to analyze SBG from eight different geographical sources using high-performance liquid chromatography (HPLC) coupled with multivariate chemometric methods. Two unsupervised pattern recognition models, hierarchical cluster analysis (HCA) and principal components analysis (PCA), and a supervised pattern recognition model, partial least squares discriminant analysis (PLS-DA), were used to analyze the chemical compositions and physical traits of SBG. The important chemical markers baicalin, baicalein, and wogonoside were analyzed quantitatively and with PLS-DA. These methods distinguished rotten xylem (kuqin) and strip types (tiaoqin) of SBG and found that the thickness of the slice had a significant impact on the classification of SBG. Two classes of strip types were identified: one as the uncut pharmaceutical, which was sectioned with a thickness >3 mm; the other as a thin-sectioned strip type, with a thickness of <2 mm. This fingerprinting technique coupled to a chemometric analysis was used for the simultaneous quantitation of three components (chemical markers) of SBG, and greatly simplified the complicated identification of the multiple components of this plant relative to traditional methods. The strategy can clearly distinguish between kuqin and tiaoqin of SBG, and suggests that the thickness of the slice can be used as the basis for evaluation of SBG. These data provide a theoretical basis and scientific evidence for the development and utilization of SBG.
机译:黄cut不仅是一种传统草药,而且在中国和其他亚洲国家也很流行。首次开发了一种灵敏的简单策略,可以使用高效液相色谱(HPLC)结合多元化学计量学方法从八个不同的地理区域分析SBG。两种无监督模式识别模型,层次聚类分析(HCA)和主成分分析(PCA),以及无监督模式识别模型,偏最小二乘判别分析(PLS-DA),用于分析SBG的化学成分和物理特性。使用PLS-DA定量分析了重要的化学标志物黄ical苷,黄ical苷和Wogononoside。这些方法区分了SBG的腐烂木质部(kuqin)和条状类型(调琴),并且发现切片的厚度对SBG的分类有重要影响。确定了两类条带类型:一类是未切割的药品,其厚度大于3毫米。另一种为薄条形,厚度<2 mm。该指纹技术与化学计量分析相结合,用于同时定量SBG的三个成分(化学标记),相对于传统方法,该方法大大简化了该植物中多个成分的复杂鉴定。该策略可以清楚地区分SBG的库琴和调琴,并建议将切片的厚度用作评估SBG的基础。这些数据为SBG的开发利用提供了理论依据和科学依据。

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