Institute of Pharmacy, Freie Universität Berlin, Königin-Luise-Str. 2 + 4, Berlin 14195, Germany.
Department of Pharmaceutical and Medicinal Chemistry, Institute of Pharmacy, Christian-Albrechts-Universität zu Kiel, Kiel 24118, Germany.
J Steroid Biochem Mol Biol. 2024 Sep;242:106527. doi: 10.1016/j.jsbmb.2024.106527. Epub 2024 May 6.
Methyltestosterone (MT) is one of the most frequently misused anabolic androgenic steroids detected in doping control analysis. The metabolism of MT in humans leads to several phase І metabolites and their corresponding phase Ⅱ conjugates. Previous studies have postulated the 3α-sulfoconjugate of 17α-methyl-5β-androstane-3α,17β-diol (S2) as principal sulfate metabolite of MT, with a detection window exceeding 10 days. However, a final direct and unambiguous confirmation of the structure of this metabolite is missing until now. In this study, we established an approach to detect and identify S2, using intact analysis by liquid chromatography hyphenated with tandem mass spectrometry (LC-MS/MS) without complex sample pretreatment. An in vitro study yielded the LC-MS/MS reference retention times of all 3-sulfated 17-methylandrostane-3,17-diol diastereomers, allowing for accurate structure assignment of potentially detected metabolites. In an in vivo excretion study with a single healthy male volunteer, the presence of the metabolite S2 was confirmed after a single oral dose of 10 mg MT. The reference standard was chemically synthesized, characterized by accurate mass mass spectrometry (MS) and nuclear magnetic resonance (NMR), and quantified by quantitative NMR (qNMR). Thus, this study finally provides accurate structure information on the S2 metabolite and a direct analytical method for detection of MT misuse. The availability of the reference material is expected to facilitate further evaluation and subsequent analytical method validation in anti-doping research.
甲睾酮(MT)是在兴奋剂检测中最常被滥用的合成代谢雄激素类固醇之一。在人体中,MT 的代谢会导致生成几种 I 相代谢物及其相应的 II 相共轭物。先前的研究推测 17α-甲基-5β-雄烷-3α,17β-二醇的 3α-硫酸酯(S2)是 MT 的主要硫酸代谢物,其检测窗口超过 10 天。然而,直到现在,仍然缺乏对这种代谢物结构的最终直接和明确的确认。在这项研究中,我们建立了一种使用液质联用(LC-MS/MS)进行完整分析而无需复杂样品预处理的方法来检测和鉴定 S2。体外研究得到了所有 3-硫酸化 17-甲基雄烷-3,17-二醇非对映异构体的 LC-MS/MS 参考保留时间,从而可以准确确定潜在检测到的代谢物的结构。在一项单剂量 10mg MT 口服给药的健康男性志愿者体内排泄研究中,在单次给药后确认了代谢物 S2 的存在。该参考标准通过精确质量质谱(MS)和核磁共振(NMR)进行了化学合成、表征,并通过定量 NMR(qNMR)进行了定量。因此,本研究最终提供了 S2 代谢物的确切结构信息和 MT 滥用的直接分析方法。预计参考物质的可用性将有助于在反兴奋剂研究中进一步评估和随后的分析方法验证。