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首页> 外文期刊>Analytica chimica acta >Differentiation of various kinds of Fructus schisandrae by surface desorption atmospheric pressure chemical ionization mass spectrometry combined with Principal Component Analysis
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Differentiation of various kinds of Fructus schisandrae by surface desorption atmospheric pressure chemical ionization mass spectrometry combined with Principal Component Analysis

机译:表面解吸常压化学电离质谱结合主成分分析法鉴别五味子

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摘要

Various kinds of Fructus schisandrae were studied by surface desorption atmospheric pressure chemical ionization mass spectrometry (DAPCI-MS) without any sample pretreatment. The volatile components in F. schisandrae were detected in the ambient environment and the analytical time for each sample was only 30s. F. schisandrae are produced mainly in 5 different geographical regions (Elunchun, Mudanjiang, Tonghua, Tieling and Shangluo), and they could be successfully differentiated according to their chemical markers by Principal Component Analysis (PCA). A total of 8 components which gave more contribution for PCA analysis were unambiguously identified by comparison of the MS2 data of chemical markers to the data of reference compounds as reported in the literature. Similarly, wild grown and cultivatable species of F. schisandrae were well separated by the above-mentioned method. In addition, raw and processed cultivatable F. schisandrae (steamed by water, alcohol, vinegar, or honey, and fried by honey) were found to be clustered at different location, respectively. Furthermore, the clustered degree of differently processed products was correlated with their clinical effects. Our results demonstrated that DAPCI-MS in combination with PCA was a feasible technique for high-throughput differentiation of various kinds of F. schisandrae. It is also possible that DAPCI-MS could become a powerful technology in the studies of traditional Chinese medicine studies and in situ analysis of Chinese herbs.
机译:通过表面脱附大气压化学电离质谱法(DAPCI-MS)研究了五味子五味子,而没有进行任何样品前处理。在周围环境中检测到五味子中的挥发性成分,每个样品的分析时间仅为30s。五味子主要产于5个不同的地理区域(鄂伦春,牡丹江,通化,铁岭和商洛),可以通过主成分分析(PCA)根据其化学标记成功地将其区分。通过将化学标记物的MS2数据与参考化合物的数据进行比较,可以明确鉴定出总共有8种成分对PCA分析有贡献。类似地,通过上述方法很好地分离了北五味子的野生生长和可栽培种类。另外,发现未加工和加工过的五味子五味子(用水,酒精,醋或蜂蜜蒸煮,再用蜂蜜炸)分别聚集在不同的位置。此外,不同加工产品的聚集程度与其临床效果相关。我们的结果表明,DAPCI-MS与PCA结合是一种可行的技术,可用于多种五味子的高通量分化。 DAPCI-MS也有可能成为中药研究和中药原位分析的强大技术。

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