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Identification of selected in vitro-generated phase-I metabolites of the steroidal selective androgen receptor modulator MK-0773 for doping control purposes

机译:鉴定用于掺杂控制目的的甾体选择性雄激素受体调节剂MK-0773的体外选择的I相代谢产物

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Research into developing anabolic agents for various therapeutic purposes has been pursued for decades. As the clinical utility of anabolic-androgenic steroids has been found to be limited because of their lack of tissue selectivity and associated off-target effects, alternative drug entities have been designed and are commonly referred to as selective androgen receptor modulators (SARMs). While most of these SARMs are of nonsteroidal structure, the drug candidate MK-0773 comprises a 4-aza-steroidal nucleus. Besides the intended therapeutic use, SARMs have been found to be illicitly distributed and misused as doping agents in sport, necessitating frequently updated doping control analytical assays. As steroidal compounds reportedly undergo considerable metabolic transformations, the phase-I metabolism of MK-0773 was simulated using human liver microsomal (HLM) preparations and electrochemical conversion. Subsequently, major metabolic products were identified and characterized employing liquid chromatography-high-resolution/high-accuracy tandem mass spectrometry with electrospray (ESI) and atmospheric pressure chemical ionization (APCI) as well as nuclear magnetic resonance (NMR) spectroscopy. MK-0773 produced numerous phase-I metabolites under the chosen in vitro incubation reactions, mostly resulting from mono-and bisoxygenation of the steroid. HLM yielded at least 10 monooxygenated species, while electrochemistry-based experiments resulted predominantly in three monohydroxylated metabolites. Elemental composition data and product ion mass spectra were generated for these analytes, ESI/APCI measurements corroborated the formation of at least two N-oxygenated metabolites, and NMR data obtained from electrochemistry-derived products supported structures suggested for three monohydroxylated compounds. Hereby, the hydroxylation of the A-ring located N-bound methyl group was found to be of particular intensity. In the absence of controlled elimination studies, the produced information enables the implementation of new target analytes into routine doping controls and expands the focus of anti-doping efforts concerning this new anabolic agent.
机译:数十年来一直致力于研究开发用于各种治疗目的的合成代谢药物。由于已经发现合成代谢雄激素类固醇的临床应用受到限制,因为它们缺乏组织选择性和相关的脱靶作用,因此已经设计了替代药物实体,通常将其称为选择性雄激素受体调节剂(SARM)。尽管大多数这些SARM具有非类固醇结构,但候选药物MK-0773包含4-氮杂-类固醇核。除了预期的治疗用途外,还发现SARMs在体育运动中被非法分发并被滥用为掺杂剂,因此需要经常更新掺杂控制分析方法。据报道,由于类固醇化合物经历了大量的代谢转化,因此使用人肝微粒体(HLM)制剂和电化学转化模拟了MK-0773的I相代谢。随后,使用电喷雾(ESI)和大气压化学电离(APCI)液相色谱-高分辨率/高精度串联质谱法以及核磁共振(NMR)光谱法鉴定并鉴定了主要代谢产物。 MK-0773在选定的体外温育反应下产生了许多I期代谢物,主要是由于类固醇的单加氧和双加氧作用。 HLM至少产生10个单加氧物种,而基于电化学的实验主要产生3个单羟基化代谢产物。生成了这些分析物的元素组成数据和产物离子质谱图,ESI / APCI测量结果证实了至少两种N-氧化代谢产物的形成,从电化学衍生产物获得的NMR数据支持了三种单羟基化合物的结构。因此,发现位于A环的N-结合甲基的羟基化具有特别的强度。在缺乏受控消除研究的情况下,所产生的信息使得能够将新的目标分析物实施到常规掺杂控制中,并且扩大了与这种新型合成代谢剂有关的反掺杂工作的重点。

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