4.2 Article

Detection and structural investigation of metabolites of stanozolol in human urine by liquid chromatography tandem mass spectrometry

Journal

STEROIDS
Volume 74, Issue 10-11, Pages 837-852

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.steroids.2009.05.004

Keywords

Anabolic steroids; Doping analysis; Metabolites; Precursor ion scan; QTOF MS; Chimeric mice

Funding

  1. Spanish Ministerio de Educacion y Ciencia
  2. Flemish Ministry of Culture, Youth, Sports and Media
  3. Research Foundation - Flanders (FWO)
  4. WADA, the Belgian State [IUAP P6/36-HEPRO]
  5. Ghent University via the Special Research Fund
  6. Concerted Action [01G00507]

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The applicability of LC-MS/MS in precursor ion scan mode for the detection of urinary stanozolol metabolites has been studied. The product ion at m/z 81 has been selected as specific for stanozolol metabolites without a modification in A- or N-rings and the product ions at m/z 97 and 145 for the metabolites hydroxylated in the N-ring and 4-hydroxy-stanozolol metabolites, respectively. Under these conditions, the parent drug and up to 15 metabolites were found in a positive doping test sample. The study of a sample from a chimeric uPA-SCID mouse collected after the administration of stanozolol revealed the presence of 4 additional metabolites. The information obtained from the product ion spectra was used to develop a SRM method for the detection of 19 compounds. This SRM method was applied to several doping positive samples. All the metabolites were detected in both the uPA-SCID mouse sample and positive human samples and were not detected in none of the blank samples tested; confirming the metabolic nature of all the detected compounds. In addition, the application of the SRM method to a single human excretion study revealed that one of the metabolites (4 xi,16 xi-dihydroxy-stanozolol) could be detected in negative ionization mode for a longer period than those commonly used in the screening for stanozolol misuse (3'-hydroxy-stanozolol, 16 beta-hydroxy-stanozolol and 4 beta-hydroxy-stanozolol) in doping analysis. The application of the developed approach to several positive doping samples confirmed the usefulness of this metabolite for the screening of stanozolol misuse. Finally, a tentative structure for each detected metabolite has been proposed based on the product ion spectra measured with accurate masses using UPLC-QTOF MS. (C) 2009 Elsevier Inc. All rights reserved.

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