4.4 Article

Combination of liquid-chromatography tandem mass spectrometry in different scan modes with human and chimeric mouse urine for the study of steroid metabolism

期刊

DRUG TESTING AND ANALYSIS
卷 1, 期 11-12, 页码 554-567

出版社

JOHN WILEY & SONS LTD
DOI: 10.1002/dta.56

关键词

anabolic steroids; chimeric mice; doping analysis; metabolites; methandienone; precursor ion scan; uPA-SCID

资金

  1. Flemish Ministry of Culture, Youth, Sports and Media
  2. Research Foundation - Flanders (FWO)
  3. WADA
  4. Belgian State [IUAP P6/36-HEPRO]
  5. Ghent University via the Special Research Fund
  6. Concerted Action [01G00507]
  7. German Federal Ministry of the Interior
  8. Manfred-Donike Institute for Doping Analysis

向作者/读者索取更多资源

Anabolic steroids are among the most frequently detected compounds in doping analysis. They are extensively metabolized and therefore an in-depth knowledge about steroid metabolism is needed. In this study, a liquid chromatography tandem mass spectometry (LC-MS/MS) method based on a precursor ion scan with a uPA-SCID mouse with humanized liver (a chimeric mouse) was explored for the detection of steroid metabolism. Methandienone was used as a model compound. The application of the precursor ion scan method in positive human samples and chimeric mice samples after methandienone administration allowed the detection of most steroid metabolites without any structural restriction. Three hitherto unreported metabolites were found using this approach. These metabolites were characterized using LC-MS/MS and feasible structures were proposed. The structure of one of them, 6-ene-epimethandienone, was confirmed by the synthesis of the reference compound. A selected reaction monitoring (SRM) method for the specific detection of all these metabolites has been developed. The application of this method to several human and chimeric mouse samples confirmed that more than 80% of the steroid metabolites were found in both samples. Only metabolites that are poorly detectable by LC-MS/MS were not detected in some urine samples. The metabolic nature of the unreported metabolites was also confirmed. A global strategy for the detection of steroid metabolites combining both human and chimeric mouse urine is proposed. Copyright (C) 2009 John Wiley & Sons, Ltd.

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