Identification of multiple constituents from seed of Vaccaria segetalis with an adsorbent‐separation strategy based on liquid chromatography coupled to quadrupole time‐of‐flight mass spectrometry

化学 色谱法 汤剂 质谱法 四极飞行时间 串联质谱法 电喷雾电离 吸附 五味子 中医药 传统医学 有机化学 医学 病理 替代医学
作者
Peng Qi,Feng Zhang,Rui Xue,Zhixiong Li,Mingcang Chen,Zhaolin Sun,Kaicheng Zhu,Chenggang Huang
出处
期刊:Rapid Communications in Mass Spectrometry [Wiley]
卷期号:28 (11): 1243-1257 被引量:14
标识
DOI:10.1002/rcm.6893
摘要

RATIONALE Seeds of Vaccaria segetalis ( Wang‐Bu‐Liu‐Xing in Chinese) are mainly used in traditional Chinese medicine for the treatment of amenorrhea, breast infections, and edema. The study was designed to identify the components and metabolites of Wang‐Bu‐Liu‐Xing . METHODS A novel methodology combining an adsorbent‐separation strategy with analysis by liquid chromatography/quadrupole time‐of‐flight tandem mass spectrometry (LC/QTOF‐MS/MS) was established to identify the components of Wang‐Bu‐Liu‐Xing . The adsorbent‐separation technique was applied on macroporous resin (adsorbents). Different concentrations of ethanol (30%, 60%, and 95%), which covered high‐to‐low polarity ranges, were chosen as the elution solvent, respectively. The QTOF mass spectrometer was operated in negative ion mode with an electrospray ionization source. RESULTS A total of 52 components were successfully identified in the Wang‐Bu‐Liu‐Xing decoction based on the fragmentation pathways and QTOF high‐accuracy mass spectral analysis. To the best of our knowledge, several new saponins were reported for the first time. A total of 20 compounds, which included 10 prototypes and 10 metabolites, were also identified in rat plasma and urine after oral administration of Wang‐Bu‐Liu‐Xing decoction. CONCLUSIONS An integrated adsorbent‐separation strategy is powerful and reliable for global detection and identification of complex components in herbal prescriptions. The components identified in rat biofluids may also provide helpful chemical information for further pharmacology and active mechanism study on this herb. Copyright © 2014 John Wiley & Sons, Ltd.
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