Your browser doesn't support javascript.
loading
Rapid Screening and Identification of Daidzein Metabolites in Rats Based on UHPLC-LTQ-Orbitrap Mass Spectrometry Coupled with Data-Mining Technologies.
Zhao, Wenjing; Shang, Zhanpeng; Li, Qinqing; Huang, Moran; He, Wenbin; Wang, Zhibin; Zhang, Jiayu.
Affiliation
  • Zhao W; School of Chinese Pharmacy, Beijing University of Chinese Medicine, Beijing 100102, China. cosyzwj@126.com.
  • Shang Z; School of Chinese Pharmacy, Beijing University of Chinese Medicine, Beijing 100102, China. zpshang1206@163.com.
  • Li Q; Shanxi Key Laboratory of Chinese Medicine Encephalopathy, Shanxi University of Chinese Medicine, Jinzhong 030619, China. lqqlqq@126.com.
  • Huang M; School of Chinese Pharmacy, Beijing University of Chinese Medicine, Beijing 100102, China. 15810152609@163.com.
  • He W; Shanxi Key Laboratory of Chinese Medicine Encephalopathy, Shanxi University of Chinese Medicine, Jinzhong 030619, China. hewenbinbin@aliyun.com.
  • Wang Z; School of Chinese Pharmacy, Beijing University of Chinese Medicine, Beijing 100102, China. wangzhibin4804@126.com.
  • Zhang J; Beijing Research Institute of Chinese Medicine, Beijing University of Chinese Medicine, Beijing 100029, China. wangzhibin4804@126.com.
Molecules ; 23(1)2018 Jan 12.
Article in En | MEDLINE | ID: mdl-29329272
ABSTRACT
Daidzein, the main bioactive soy isoflavone in Nature, has been found to possess many biological functions. It has been investigated in particular as a phytoestrogen owing to the similarity of its structure with that of the human hormone estrogen. Due to the lack of comprehensive studies on daidzein metabolism, further research is still required to clarify its in vivo metabolic fate and intermediate processes. In this study, an efficient strategy was established using UHPLC-LTQ-Orbitrap mass spectrometry to profile the metabolism of daidzein in rats. Meanwhile, multiple data-mining methods including high-resolution extracted ion chromatogram (HREIC), multiple mass defect filtering (MMDF), neutral loss fragment (NLF), and diagnostic product ion (DPI) were utilized to investigate daidzein metabolites from the HR-ESI-MS¹ to ESI-MSn stage in both positive and negative ion modes. Consequently, 59 metabolites, including prototype compounds, were positively or tentatively elucidated based on reference standards, accurate mass measurements, mass fragmentation behaviors, chromatographic retention times, and corresponding calculated ClogP values. As a result, dehydration, hydrogenation, methylation, dimethylation, glucuronidation, glucosylation, sulfonation, ring-cleavage, and their composite reactions were ascertained to interpret its in vivo biotransformation. Overall, our results not only revealed the potential pharmacodynamics forms of daidzein, but also aid in establishing a practical strategy for rapid screening and identifying metabolites of natural compounds.
Subject(s)
Key words

Full text: 1 Database: MEDLINE Main subject: Phytoestrogens / Tandem Mass Spectrometry / Data Mining / Isoflavones Type of study: Diagnostic_studies / Guideline / Screening_studies Language: En Journal: Molecules Year: 2018 Type: Article Affiliation country: China

Full text: 1 Database: MEDLINE Main subject: Phytoestrogens / Tandem Mass Spectrometry / Data Mining / Isoflavones Type of study: Diagnostic_studies / Guideline / Screening_studies Language: En Journal: Molecules Year: 2018 Type: Article Affiliation country: China