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首页> 外文期刊>Rapid Communications in Mass Spectrometry: RCM >The detection of androstenedione abuse in sport: a mass spectrometry strategy to identify the 4-hydroxyandrostenedione metabolite
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The detection of androstenedione abuse in sport: a mass spectrometry strategy to identify the 4-hydroxyandrostenedione metabolite

机译:运动中雄烯二酮滥用的检测:鉴定4-羟基雄烯二酮代谢物的质谱策略

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摘要

Studies have shown that the administration of androstenedione (ADIONE) significantly increases the urinary ratio of testosterone glucuronide to epitestosterone glucuronide (T/E) - measured by gas chromatography/mass spectrometry (GC/MS) - in subjects with a normal (approximate to 1) or naturally high (>1) initial values. However, the urinary T/E ratio has been shown not to increase in subjects with naturally low (<1) initial values. Such cases then rely on the detection of C-6-hydroxylated metabolites shown to be indicative of ADIONE administration. While these markers may be measured in the routine GC/MS steroid profile, their relatively low urinary excretion limits the use of gas chromatography/combustion/isotope ratio mass spectrometry (GC/C/IRMS) to specifically confirm ADIONE administration based on depleted C-13 content. A mass spectrometry strategy was used in this study to identify metabolites of ADIONE with the potential to provide compound-specific detection. C-4-hydroxylation was subsequently shown to be a major metabolic pathway following ADIONE administration, thereby resulting in urinary excretion of 4-hydroxyandrostenedione (4OH-ADIONE). Complementary analysis of 4OH-ADIONE by GC/MS and GC/C/IRMS was used to confirm ADIONE administration. Copyright (C) 2008 Commonwealth of Australia. Published by John Wiley & Sons, Ltd
机译:研究表明,在正常(约1左右)受试者中,雄烯二酮(ADIONE)的使用显着提高了睾丸激素葡糖醛酸苷与表睾酮葡萄糖醛酸苷(T / E)的尿比(通过气相色谱/质谱法(GC / MS)测定) )或自然较高(> 1)的初始值。但是,尿液中的T / E比值在自然值较低(<1)的受试者中并未增加。然后,这种情况依赖于检测到表明可施用ADIONE的C-6-羟基化代谢产物。虽然可以在常规GC / MS类固醇谱中测量这些标记物,但它们相对较低的尿液排泄量限制了气相色谱/燃烧/同位素比质谱法(GC / C / IRMS)的使用,以基于C-消耗量的确定来确定ADIONE的使用13个内容。在这项研究中,采用了质谱分析策略来鉴定ADIONE的代谢物,该代谢物具有提供化合物特异性检测的潜力。随后显示C-4-羟基化是施用ADIONE后的主要代谢途径,从而导致尿中排泄4-羟基雄烯二酮(4OH-ADIONE)。通过GC / MS和GC / C / IRMS对4OH-ADIONE进行了补充分析,以确认ADIONE的使用。版权所有(C)2008澳大利亚联邦。由John Wiley&Sons,Ltd发布

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