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LIU Xiao-Wei, ZHANG Feng, GAO Shou-Hong, JIANG Bo, CHEN Wan-Sheng. Metabolite profiling of Zi-Shen pill in rat biological specimens by UPLC-Q-TOF/MS[J]. 中国天然药物, 2015, 13(2): 145-160.
引用本文: LIU Xiao-Wei, ZHANG Feng, GAO Shou-Hong, JIANG Bo, CHEN Wan-Sheng. Metabolite profiling of Zi-Shen pill in rat biological specimens by UPLC-Q-TOF/MS[J]. 中国天然药物, 2015, 13(2): 145-160.
LIU Xiao-Wei, ZHANG Feng, GAO Shou-Hong, JIANG Bo, CHEN Wan-Sheng. Metabolite profiling of Zi-Shen pill in rat biological specimens by UPLC-Q-TOF/MS[J]. Chinese Journal of Natural Medicines, 2015, 13(2): 145-160.
Citation: LIU Xiao-Wei, ZHANG Feng, GAO Shou-Hong, JIANG Bo, CHEN Wan-Sheng. Metabolite profiling of Zi-Shen pill in rat biological specimens by UPLC-Q-TOF/MS[J]. Chinese Journal of Natural Medicines, 2015, 13(2): 145-160.

Metabolite profiling of Zi-Shen pill in rat biological specimens by UPLC-Q-TOF/MS

Metabolite profiling of Zi-Shen pill in rat biological specimens by UPLC-Q-TOF/MS

  • 摘要: This study aimed to profile the chemical constituents of Zi-Shen pill (ZSP) and its metabolites in plasma, urine, and prostate tissue, after administration into rats. Based on the chromatographic retention behavior, fragmentation patterns of chemical components, published literatures, and literature databases, an UPLC-Q-TOF/MS (LC-TOF/MS) method was established to identify the components of ZSP and its metabolites in biological samples. A total of 101 compounds were identified and tentatively characterized from the ZSP, including alkaloids, xanthones, and timosaponins. Except for 33 prototype components, 22 metabolites were detected in the plasma, urine, and prostate, and mainly came from Phellodendri Amurensis Cortex and Anemarrhenae Rhizoma. It was found that glucuronidation and sulfation were the major metabolic processes of xanthones, while oxidation, demethylation, and glucuronidation were the major metabolic pathways of alkaloids. In summary, the present study provided important chemical information on the metabolism of ZSP, indicating that alkaloids might be able to be absorbed into the prostate. The results provided a basis for further studies of the mechanisms of action for ZSP.

     

    Abstract: This study aimed to profile the chemical constituents of Zi-Shen pill (ZSP) and its metabolites in plasma, urine, and prostate tissue, after administration into rats. Based on the chromatographic retention behavior, fragmentation patterns of chemical components, published literatures, and literature databases, an UPLC-Q-TOF/MS (LC-TOF/MS) method was established to identify the components of ZSP and its metabolites in biological samples. A total of 101 compounds were identified and tentatively characterized from the ZSP, including alkaloids, xanthones, and timosaponins. Except for 33 prototype components, 22 metabolites were detected in the plasma, urine, and prostate, and mainly came from Phellodendri Amurensis Cortex and Anemarrhenae Rhizoma. It was found that glucuronidation and sulfation were the major metabolic processes of xanthones, while oxidation, demethylation, and glucuronidation were the major metabolic pathways of alkaloids. In summary, the present study provided important chemical information on the metabolism of ZSP, indicating that alkaloids might be able to be absorbed into the prostate. The results provided a basis for further studies of the mechanisms of action for ZSP.

     

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