Publication: Comprehensive two-dimensional gas chromatography improves separation and identification of anabolic agents in doping control
Issued Date
2010-01-01
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ISSN
00219673
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2-s2.0-72049098811
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Mahidol University
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SCOPUS
Bibliographic Citation
Journal of Chromatography A. Vol.1217, No.1 (2010), 127-135
Suggested Citation
Blagoj S. Mitrevski, Prapin Wilairat, Philip J. Marriott Comprehensive two-dimensional gas chromatography improves separation and identification of anabolic agents in doping control. Journal of Chromatography A. Vol.1217, No.1 (2010), 127-135. doi:10.1016/j.chroma.2009.10.075 Retrieved from: https://repository.li.mahidol.ac.th/handle/20.500.14594/28836
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Title
Comprehensive two-dimensional gas chromatography improves separation and identification of anabolic agents in doping control
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Abstract
The application of comprehensive two-dimensional gas chromatography coupled to time-of-flight mass spectrometry (GC × GC-TOFMS) for the analysis of six anabolic agents (AAs) in doping control is investigated in this work. A non-polar-polar column configuration with 0.2 μm film thickness (df) second dimension (2D) column was employed, offering much better spread of the components on2D when compared to the alternative 0.1 μm df2D column. The proposed method was tested on the "key" AA that the World Anti-Doping Agency (WADA) had listed at the low ng mL-1levels (clenbuterol, 19-norandrosterone, epimethendiol, 17α-methyl-5α-androstane-3α,17β-diol, 17α-methyl-5β-androstane-3α,17β-diol and 3′-OH-stanozolol). The compounds were spiked in a blank urine extract obtained by solid-phase extraction, hydrolysis and liquid-liquid extraction; prior to analysis they were converted to the corresponding trimethylsilyl (TMS) derivatives. The limit of detection (LOD) was below or equal to the minimum required performance limit (MRPL) of 2 ng mL-1defined by WADA, and the correlation coefficient was in the range from 0.995 to 0.999. The method allows choosing an ion from the full mass spectra which shows the least interference from the matrix and/or the best sensitivity; this can only be done if full scan mass spectral data are available. The advantage of GC × GC over classical one-dimensional GC (1D GC), in terms of separation efficiency and sensitivity, is demonstrated on a positive urine control sample at a concentration of 5 ng mL-1. The obtained similarity to the in-house created TOFMS spectra library at this level of concentration was in the range from 822 to 932 (on the scale from 0 to 999). Since full mass spectral information are recorded, the method allows the retro-search of non-target compounds or new "designer steroids", which cannot be detected with established GC-MS methods that use selected ion monitoring (SIM) mode. © 2009 Elsevier B.V. All rights reserved.