Tian Shuang-Shuang, Zhao Xiao-Mei, Liu Shan-Shan, Feng Wei-Hong, Chen Liang-Mian, Yan Li-Hua, Wang Zhi-Min
National Engineering Laboratory for Quality Control Technology of Chinese Herbal Medicines, Institute of Chinese Materia Medica,China Academy of Chinese Medical Sciences Beijing 100700, China Henan University of Chinese Medicine Zhengzhou 450000, China.
National Engineering Laboratory for Quality Control Technology of Chinese Herbal Medicines, Institute of Chinese Materia Medica,China Academy of Chinese Medical Sciences Beijing 100700, China.
Zhongguo Zhong Yao Za Zhi. 2020 Apr;45(7):1545-1557. doi: 10.19540/j.cnki.cjcmm.20200324.201.
An ultra-performance liquid chromatography(UPLC) method integrating characteristic chromatogram and eight terpenoids determination has been established for comparing the differences of Alismatis Rhizoma(Zexie) from different product areas. Thirty-seven batches of crude drugs and thirty batches of prepared slices of Alismatis Rhizoma were analyzed. The obtained data were analyzed by similarity evaluation, principal components analysis(PCA) and partial least squares discriminant analysis(PLS-DA). There were three main characteristic peaks in the characteristic chromatograms, and alisol B 23-acetate(S) was selected as the reference. Compared with the S peak, the relative retention times of the other two characteristic peaks were 0.55(alisol) and 0.77(alisol B), respectively. Peak areas and the ratio of alisol B to alisol B 23-acetate could be used to distinguish Alismatis Rhizoma from different geographical origins. The samples were divided into three groups by PCA and PLS-DA based on the content determination results, and they were "Jian Zexie"(Fujian and Jiangxi provinces), "Chuan Zexie"(Sichuan and Hubei provinces), and "Guang Zexie"(Guangxi province). The contents of chemical components in samples from different producing areas were notably different. For example, the contents of alisol A and alisol A 24-acetate were significantly higher in "Guang Zexie" compared with "Jian Zexie" and "Chuan Zexie"(P<0.000 1). The contents of alisol B and alisol C were significantly higher in "Chuan Zexie" compared with "Jian Zexie"(P<0.000 1). Combining the characteristic chromatograms and quantitative analysis of eight terpenoids, this study showed that the relative contents of components and their ratios were notable different in samples from different regions, but types and numbers of chemical compositions were basically similar. The results of this study illustrated the regional differences of Alismatis Rhizoma and their components characteristics, and provided references for authentication and quality control of Alismatis Rhizoma.
建立了一种结合特征图谱和8种萜类成分测定的超高效液相色谱(UPLC)方法,用于比较不同产地泽泻的差异。对37批泽泻药材和30批泽泻饮片进行了分析。所得数据通过相似度评价、主成分分析(PCA)和偏最小二乘判别分析(PLS-DA)进行分析。特征图谱中有3个主要特征峰,选择泽泻醇B 23-乙酸酯(S)作为参照。与S峰相比,另外两个特征峰的相对保留时间分别为0.55(泽泻醇)和0.77(泽泻醇B)。峰面积以及泽泻醇B与泽泻醇B 23-乙酸酯的比值可用于区分不同地理来源的泽泻。基于含量测定结果,通过PCA和PLS-DA将样品分为三组,即“建泽泻”(福建和江西)、“川泽泻”(四川和湖北)和“广泽泻”(广西)。不同产地样品的化学成分含量存在显著差异。例如,“广泽泻”中泽泻醇A和泽泻醇A 24-乙酸酯的含量显著高于“建泽泻”和“川泽泻”(P<0.000 1)。“川泽泻”中泽泻醇B和泽泻醇C的含量显著高于“建泽泻”(P<0.000 1)。结合特征图谱和8种萜类成分的定量分析,本研究表明不同产地样品中成分的相对含量及其比例存在显著差异,但化学成分的种类和数量基本相似。本研究结果阐明了泽泻的地域差异及其成分特征,为泽泻的鉴定和质量控制提供了参考。