Moscow Antidoping Centre, Elizavetinsky per. 10, 105005 Moscow, Russia.
J Steroid Biochem Mol Biol. 2012 Feb;128(3-5):121-7. doi: 10.1016/j.jsbmb.2011.11.004. Epub 2011 Nov 27.
The biotransformation of dehydrochloromethyltestosterone (DHCMT, 4-chloro-17β-hydroxy,17α-methylandrosta-1,4-dien-3-one) in man was studied with the aim to discover long-term metabolites valuable for the antidoping analysis. Having applied a high performance liquid chromatography for the fractionation of urinary extract obtained from the pool of several DHCMT positive urines, about 50 metabolites were found. Most of these metabolites were included in the GC-MS/MS screening method, which was subsequently applied to analyze the post-administration and routine doping control samples. As a result of this study, 6 new long-term metabolites were identified tentatively characterized using GC-MS and GC-MS/MS as 4-chloro-17α-methyl-5β-androstan-3α,16,17β-triol (M1), 4-chloro-18-nor-17β-hydroxymethyl,17α-methyl-5β-androsta-1,13-dien-3α-ol (M2), 4-chloro-18-nor-17β-hydroxymethyl,17α-methyl-5β-androst-13-en-3α-ol (M3), its epimer 4-chloro-18-nor-17α-hydroxymethyl,17β-methyl-5β-androst-13-en-3α-ol, 4-chloro-18-nor-17β-hydroxymethyl,17α-methylandrosta-4,13-dien-3α-ol (M4) and its epimer 4-chloro-18-nor-17α-hydroxymethyl,17β-methylandrosta-4,13-dien-3α-ol. The most long-term metabolite M3 was shown to be superior in the majority of cases to the other known DHCMT metabolites, such as 4-chloro-18-nor-17β-hydroxymethyl,17α-methylandrosta-1,4,13-trien-3-one and 4-chloro-3α,6β,17β-trihydroxy-17α-methyl-5β-androst-1-en-16-one.
研究了去氯甲基睾丸酮(DHCMT,4-氯-17β-羟基-17α-甲基-1,4-雄甾二烯-3-酮)在人体内的生物转化,目的是发现对反兴奋剂分析有价值的长期代谢产物。应用高效液相色谱法对从多个 DHCMT 阳性尿液池获得的尿液提取物进行分离,发现了约 50 种代谢产物。这些代谢产物中的大多数都包含在 GC-MS/MS 筛选方法中,随后该方法被应用于分析给药后和常规兴奋剂控制样本。通过这项研究,我们初步鉴定了 6 种新的长期代谢产物,使用 GC-MS 和 GC-MS/MS 将其鉴定为 4-氯-17α-甲基-5β-雄甾烷-3α,16,17β-三醇(M1)、4-氯-18-降-17β-羟甲基-17α-甲基-5β-雄甾-1,13-二烯-3α-醇(M2)、4-氯-18-降-17β-羟甲基-17α-甲基-5β-雄甾-13-烯-3α-醇(M3)、其差向异构体 4-氯-18-降-17α-羟甲基-17β-甲基-5β-雄甾-13-烯-3α-醇、4-氯-18-降-17β-羟甲基-17α-甲基-雄甾-4,13-二烯-3α-醇(M4)和其差向异构体 4-氯-18-降-17α-羟甲基-17β-甲基-雄甾-4,13-二烯-3α-醇。在大多数情况下,最长期的代谢产物 M3 优于其他已知的 DHCMT 代谢产物,如 4-氯-18-降-17β-羟甲基-17α-甲基-1,4-雄甾二烯-3-酮和 4-氯-3α,6β,17β-三羟基-17α-甲基-5β-雄甾-1-烯-16-酮。