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Quality difference evaluation of Radix tetrastigmae based on quantitative analysis of multi-components by single-marker, chemometrics and entropy weight-technique for order preference by similarity to ideal solution method

Published on Apr. 12, 2024Total Views: 407 times Total Downloads: 203 times Download Mobile

Author: XIANG Yan 1 HU Zhen 1 SUN Liang 1 ZHANG Xiaoqin 2

Affiliation: 1. Department of Pharmacy, Lishui Hospital of TCM Affiliated to Zhejiang Chinese Medical University, Lishui 323000, Zhejiang Province, China 2. Center of Pharmaceutical Research, Lishui Hospital of TCM Affiliated to Zhejiang Chinese Medical University, Lishui 323000, Zhejiang Province, China

Keywords: Radix tetrastigmae Quantitative analysis of multi-components by single- marker Chemometrics Entropy weight-technique for order preference by similarity to ideal solution Quality difference evaluation

DOI: 10.12173/j.issn.1008-049X.202311110

Reference: XIANG Yan, HU Zhen, SUN Liang, ZHANG Xiaoqin.Quality difference evaluation of Radix tetrastigmae based on quantitative analysis of multi-components by single-marker, chemometrics and entropyweight-technique for order preference by similarity to ideal solution method[J].Zhongguo Yaoshi Zazhi,2024, 27(3):365-375.DOI: 10.12173/j.issn.1008-049X.202311110.[Article in Chinese]

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Abstract

Objective  To evaluate the quality difference of Radix tetrastigmae from different producing areas by quantitative analysis of multi-components by single-marker (QAMS), chemometrics and entropy weight-technique for order preference by similarity to ideal solution (EW-TOPSIS) method, and to provide basis for studying the geoherbalism of Radix tetrastigmae.

Methods  18 batches of Radix tetrastigmae samples were collected from 6 provinces including Chongqing, Guangxi, Hunan, Guangdong, Zhejiang and Jiangsu. The contents of chlorogenic acid, caffeic acid, catechin, procyanidin B1, orientin, rutoside, polydatin, isoquercitrin, kaempferol-3-O-rutinoside, astragalin, resveratrol and kaempfero in Radix tetrastigmae were simultaneously determined by HPLC-QAMS, and a multi-component quantitative control mode for Radix tetrastigmae was established. The main potential markers affecting the quality of Radix tetrastigmae were screened by chemical pattern recognition such as principal component analysis and orthogonal partial least squares-discriminant analysis. The EW-TOPSIS was used to establish the quality evaluation model of Radix tetrastigmae, and the quality difference was comprehensively evaluated.

Results  The 12 components showed good linear relationships in their own ranges. The average recovery were 96.89%-100.13%, with the RSDs﹤2.0% (n=9). There was no significant difference between the calculated values of HPLC-QAMS and the measured values of external standard method. The cumulative variance contribution rate of the first two principal components was 90.15%. The proanthocyanidin B1, catechin, rutoside, orientin and chlorogenic acid may be the main potential markers affecting the quality of Radix tetrastigmae. The results of EW-TOPSIS analysis showed that the relative correlation of 18 batches of Radix tetrastigmae were 0.154 9-0.732 0.

Conclusion  The established method is convenient in operation and accurate in results, and can be used as a quantitative control method for multi-components of Radix tetrastigmae. The chemometrics and EW-TOPSIS method are objective and comprehensive, and can be used for the overall quality difference evaluation of Radix tetrastigmae.

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