Rapid Profiling of the Marker Components in Artemisia annua L. and their Metabolites in Rats Using an Improved Liquid Chromatography-tandem Highresolution Mass Spectrometry-based Technology

青蒿素 色谱法 代谢组 倍半萜内酯 倍半萜 化学 液相色谱-质谱法 质谱法 次生代谢物 代谢途径 青蒿 代谢组学 串联质谱法 葡萄糖醛酸化 弗洛斯 代谢物 生物化学 新陈代谢 立体化学 生物 抗氧化剂 恶性疟原虫 体外 微粒体 疟疾 基因 免疫学 芦丁
作者
Xin Wang,Tianyu Cai,Yuewu Xie,Xiaoyue Chen,Aijuan Yang,Jie Xing
出处
期刊:Current Drug Metabolism [Bentham Science Publishers]
卷期号:22 (11): 858-869 被引量:2
标识
DOI:10.2174/1389200222666210129160643
摘要

As parasite resistance to the main artemisinin drugs has emerged in Southern Asia, the traditional herb Artemisia annua L. (AAL) from which artemisinin (QHS) isolated was found to overcome resistance to QHS. However the component and metabolite profiles of AAL remain unclear.In this study, component profiling of marker compounds in AAL (amorphane sesquiterpene lactones and flavonoids) was performed and their subsequent metabolism was investigated in rats.For efficient component classification and structural characterization, an improved liquid chromatography- tandem high-resolution mass spectrometry (HRMS)-based analytical strategy was applied, i.e., background subtraction (BS) followed by ring-double-bond (RDB) filter in tandem with repeated BS processing. Structures of detected components/metabolites were characterized based on integrated information including their HRMSn patterns, RDB values, the established component/metabolite network, the biosynthesis pathways of AAL, and/or NMR data.A total of 38 amorphane sesquiterpene lactones and 35 flavonoids were found in AAL as prototype compounds, among which 26 components were previously undescribed. Major compounds were identified by comparing them with reference standards. Among 73 AAL prototypes administered, 38 were absorbed in the circulation as the prototype. Moreover, 20 metabolites of amorphane sesquiterpene lactones and 10 metabolites of flavonoids were detected in rats. The major metabolic pathways included oxidation, methylation, glucuronidation and sulfation.The component and metabolite network were established for marker components in AAL, which will be valuable to understand the synergistic antimalarial potency of QHS in A. annua L. The analytical strategy can also be applied to other herbal medicines.
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