Discovery of chemical markers for identifying species, growth mode and production area of Astragali Radix by using ultra-high-performance liquid chromatography coupled to triple quadrupole mass spectrometry

毛花素 化学 黄芪甲苷 四极飞行时间 根(腹足类) 色谱法 三级四极质谱仪 三萜 主成分分析 代谢组学 化学成分 质谱法 指纹(计算) 高效液相色谱法 生物 选择性反应监测 植物 串联质谱法 数学 病理 替代医学 芒柄花素 计算机科学 内分泌学 染料木素 计算机安全 大豆黄酮 统计 医学
作者
Can-Jian Wang,Fan He,Yu‐Feng Huang,Hongliang Ma,Ying‐Ping Wang,Chunsong Cheng,Jin-le Cheng,Chi-Chou Lao,Di-An Chen,Zhifeng Zhang,Zhen Sang,Pei Luo,Shengyuan Xiao,Ying Xie,Hua Zhou
出处
期刊:Phytomedicine [Elsevier]
卷期号:67: 153155-153155 被引量:29
标识
DOI:10.1016/j.phymed.2019.153155
摘要

Astragali Radix (AR) is a well-known Chinese herbal medicine. The quality of AR can be affected by many factors such as species, growth mode and production area, but there are still no chemical markers to distinguish it.To explore chemical markers for improving the quality assessment of AR and discover chemical markers for identifying species, growth mode and production area of AR.A highly sensitive, efficient and accurate method based on ultra-high performance liquid chromatography coupled to triple quadrupole mass spectrometry (UHPLC-QQQ-MS/MS) for simultaneous quantitative determination of 14 major chemical components (five flavonoids and nine triterpene saponins) in 94 batches of AR from China, Republic of Korea and Germany was developed for the first time. To explore chemical markers and assess changes in the contents of 14 compounds in the 94 batches of AR samples from different regions, hierarchical clustering analysis (HCA) and principal component analysis (PCA) were performed.Astragaloside III was not only an important chemical marker for distinguishing two species of AR, i.e.: Astragalus mongholicus and A. membranaceus, but also a potential chemical marker for the classification of cultivated and semi-wild AR. In addition, in the batches of cultivated AR, the content of isoastragaloside II and cyclocephaloside II were greater in batches from the region of Shaanxi Province than that of other Provinces in China, but the content of calycosin-7-O-β-D-glucoside and astragaloside IV, which are the quality control markers of AR required by the Chinese Pharmacopoeia, were higher than that of other Provinces in China. In addition, the content of calycosin-7-O-β-D-glucoside, ononin, calycosin and astragaloside I could be used to identify samples of AR collected from China, Republic of Korea and Germany.This UHPLC-QQQ-MS/MS method could be applied to the quantitative evaluation of AR and could be an important and meaningful reference to develop chemical markers for quality control of AR.
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