李金花, 陈春楠, 谷彩梅, 谭雪莹, 张翔, 杜娟, 张泰铭, 黄林芳. 基于非线性化学指纹图谱技术鉴别西洋参和人参及西洋参产地J. 药学学报, 2017,52(7): 1150-1156. doi: 10.16438/j.0513-4870.2016-1014
引用本文: 李金花, 陈春楠, 谷彩梅, 谭雪莹, 张翔, 杜娟, 张泰铭, 黄林芳. 基于非线性化学指纹图谱技术鉴别西洋参和人参及西洋参产地J. 药学学报, 2017,52(7): 1150-1156. doi: 10.16438/j.0513-4870.2016-1014
LI Jin-hua, CHEN Chun-nan, GU Cai-mei, TAN Xue-ying, ZHANG Xiang, DU Juan, ZHANG Tai-ming, HUANG Lin-fang. Identification of different ginsengs and producing areas of Panax quinquefolium using non-linear chemical fingerprintJ. Acta Pharmaceutica Sinica, 2017,52(7): 1150-1156. doi: 10.16438/j.0513-4870.2016-1014
Citation: LI Jin-hua, CHEN Chun-nan, GU Cai-mei, TAN Xue-ying, ZHANG Xiang, DU Juan, ZHANG Tai-ming, HUANG Lin-fang. Identification of different ginsengs and producing areas of Panax quinquefolium using non-linear chemical fingerprintJ. Acta Pharmaceutica Sinica, 2017,52(7): 1150-1156. doi: 10.16438/j.0513-4870.2016-1014

基于非线性化学指纹图谱技术鉴别西洋参和人参及西洋参产地

Identification of different ginsengs and producing areas of Panax quinquefolium using non-linear chemical fingerprint

  • 摘要: 利用非线性化学指纹图谱技术研究西洋参和人参,提出鉴别两种参及西洋参产地溯源的新方法。收集加拿大、吉林、陕西3个不同产地西洋参和吉林人参样品,利用硫酸、硫酸锰、丙酮、溴酸钠和样品产生的非线性化学反应建立指纹图谱,结合图谱直观特征和系统相似度对不同种药材及不同产地西洋参进行鉴别评价。同时,利用HPLC法测定西洋参中7种主要的人参皂苷,以研究不同产地西洋参的品质差异。结果显示:样品用量为0.4 g,反应温度为37 ℃时,样品非线性化学指纹图谱具有良好特征性和重现性;西洋参和人参图谱特征有显著差异,可直观区分;系统相似度模式识别可方便地将西洋参和人参,以及不同产地的西洋参鉴别开来。含量测定结果显示不同产地的西洋参存在品质差异,快速鉴别产地和品质评价具重要意义。与HPLC法相比,非线性化学指纹图谱技术提供了更简单、快速、经济的中药鉴别和质量控制方法。本研究为西洋参、人参的“快速精准鉴别”和西洋参产地区分评价提供了一种全新的方法,为中药质量评控提供新视野。

     

    Abstract: Panax quinquefolium and Panax ginseng were investigated using non-linear chemical fingerprint technology, and a novel method to identify two ginsengs and different producing areas of P. quinquefolium was put forward. The non-linear chemical fingerprints of P. quinquefolium(collected from Canada, Jilin and Shaanxi)and P. ginseng (collected from Jilin)were obtained by reactions took place in the system of "H2SO4-MnSO4-CH3COCH3-NaBrO3" and their system similarities were evaluated. In the meantime, the quality difference in P. quinquefolium from different producing areas was evaluated using HPLC to determine the contents of main 7 ginsenosides. As a result, the non-linear chemical fingerprints exhibited a good reproducibility and characteristic when dosage of detection was 0.4 g and the reaction temperature was 37 ℃. The fingerprint characteristics of P. quinquefolium were obviously different from P. ginseng. The two species of ginsengs could be distinguished by the visual fingerprint characteristics, and P. quinquefolium from different producing areas were identified by the system similarities. Furthermore, HPLC analysis showed that the quality P. quinquefolium from different producing areas was varied, which indicated that rapid identification and quality evaluation of P. quinquefolium become very important and necessary. Compared with HPLC technology, non-linear chemical fingerprint is a more convenient, rapid and economic technology. This study provides a novel strategy to distinguish and evaluate P. quinquefolium and P. ginseng, which will provide a reference for the quality evaluation and control of Chinese medicine.

     

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