Center for Preventive Doping Research, Institute of Biochemistry, German Sport University Cologne, Am Sportpark Müngersdorf 6, 50933 Cologne, Germany.
Faculty of Chemistry, University of Cologne, Greinstraße 4-6, 50939 Cologne, Germany.
Molecules. 2023 Jul 20;28(14):5541. doi: 10.3390/molecules28145541.
Among anabolic agents, selective androgen receptor modulators (SARMs) represent a new class of potential drugs that can exhibit anabolic effects on muscle and bone with reduced side effects due to a tissue-selective mode of action. Besides possible medical applications, SARMs are used as performance-enhancing agents in sports. Therefore, they are prohibited by the World Anti-Doping Agency (WADA) in and out of competition. Since their inclusion into the WADA Prohibited List in 2008, there has been an increase in not only the number of adverse analytical findings, but also the total number of SARMs, making continuous research into SARMs an ongoing topic in the field of doping controls. 4-((2,3)-2-Ethyl-3-hydroxy-5-oxopyrrolidin-1-yl)-2-(trifluoromethyl)benzonitrile (SARM 2f) is a novel SARM candidate and is therefore of particular interest for sports drug testing. This study describes the synthesis of SARM 2f using a multi-step approach, followed by full characterization using liquid chromatography-high-resolution mass spectrometry (LC-HRMS) and nuclear magnetic resonance spectroscopy (NMR). To provide the first insights into its biotransformation in humans, SARM 2f was metabolized using human liver microsomes and the microsomal S9 fraction. A total of seven metabolites, including phase I and phase II metabolites, were found, of which three metabolites were chemically synthesized in order to confirm their structure. Those can be employed in testing procedures for routine doping controls, further improving anti-doping efforts.
在合成代谢类药物中,选择性雄激素受体调节剂 (SARMs) 代表了一类新的潜在药物,它们可以在减少副作用的情况下对肌肉和骨骼产生合成代谢作用,这是由于其组织选择性作用模式。除了可能的医学应用外,SARMs 还被用作运动中的性能增强剂。因此,它们被世界反兴奋剂机构 (WADA) 在比赛内外禁止使用。自 2008 年被纳入 WADA 禁用清单以来,不仅出现了更多的阳性分析结果,而且 SARMs 的总数也有所增加,这使得 SARMs 的不断研究成为兴奋剂控制领域的一个持续话题。4-((2,3)-2-乙基-3-羟基-5-氧代吡咯烷-1-基)-2-(三氟甲基)苯甲腈 (SARM 2f) 是一种新型 SARM 候选物,因此特别受运动药物检测的关注。本研究描述了使用多步合成法合成 SARM 2f,然后使用液相色谱-高分辨率质谱 (LC-HRMS) 和核磁共振波谱 (NMR) 进行全面表征。为了首次深入了解其在人体内的生物转化,使用人肝微粒体和微粒体 S9 部分对 SARM 2f 进行了代谢。共发现了七种代谢物,包括 I 相和 II 相代谢物,其中三种代谢物是通过化学合成得到的,以确认其结构。这些代谢物可用于常规兴奋剂检测程序,进一步提高反兴奋剂工作的效果。