首页> 美国卫生研究院文献>Drug Metabolism and Disposition >Cytochrome P450-Mediated Oxidative Metabolism of Abused Synthetic Cannabinoids Found in K2/Spice: Identification of Novel Cannabinoid Receptor Ligands
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Cytochrome P450-Mediated Oxidative Metabolism of Abused Synthetic Cannabinoids Found in K2/Spice: Identification of Novel Cannabinoid Receptor Ligands

机译:细胞色素P450介导的在K2 /香料中发现的合成大麻素的氧化代谢:新型大麻素受体配体的鉴定

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摘要

Abuse of synthetic cannabinoids (SCs), such as [1-naphthalenyl-(1-pentyl-1H-indol-3-yl]-methanone (JWH-018) and [1-(5-fluoropentyl)-1H-indol-3-yl]-1-naphthalenyl-methanone (AM2201), is increasing at an alarming rate. Although very little is known about the metabolism and toxicology of these popular designer drugs, mass spectrometric analysis of human urine specimens after JWH-018 and AM2201 exposure identified monohydroxylated and carboxylated derivatives as major metabolites. The present study extends these initial findings by testing the hypothesis that JWH-018 and its fluorinated counterpart AM2201 are subject to cytochrome P450 (P450)-mediated oxidation, forming potent hydroxylated metabolites that retain significant affinity and activity at the cannabinoid 1 (CB1) receptor. Kinetic analysis using human liver microsomes and recombinant human protein identified CYP2C9 and CYP1A2 as major P450s involved in the oxidation of the JWH-018 and AM2201. In vitro metabolite formation mirrored human urinary metabolic profiles, and each of the primary enzymes exhibited high affinity (Km = 0.81–7.3 μM) and low to high reaction velocities (Vmax = 0.0053–2.7 nmol of product · min−1 · nmol protein−1). The contribution of CYP2C19, 2D6, 2E1, and 3A4 in the hepatic metabolic clearance of these synthetic cannabinoids was minimal (fm = <0.2). In vitro studies demonstrated that the primary metabolites produced in humans display high affinity and intrinsic activity at the CB1 receptor, which was attenuated by the CB1 receptor antagonist (6aR,10aR)-3-(1-methanesulfonylamino-4-hexyn-6-yl)-6a,7,10,10a-tetrahydro-6,6,9-trimethyl-6H-dibenzo[b,d]pyran (O-2050). Results from the present study provide critical, missing data related to potential toxicological properties of “K2” parent compounds and their human metabolites, including mechanism(s) of action at cannabinoid receptors.
机译:滥用合成大麻素(SC),例如[1-萘基-(1-戊基-1H-吲哚-3-基]-甲酮(JWH-018)和[1-(5-氟戊基)-1H-吲哚-3 -yl] -1-萘基-甲酮(AM2201)的增长速度惊人,尽管对这些流行的名牌药物的代谢和毒理学知之甚少,但JWH-018和AM2201暴露后人体尿液样品的质谱分析本研究通过检验以下假设扩展了这些最初的发现:JWH-018及其氟化对应物AM2201会受到细胞色素P450(P450)介导的氧化作用,形成有效的羟基化代谢物,这些代谢物保留了显着的亲和力。用人肝微粒体和重组人蛋白质进行的动力学分析确定CYP2C9和CYP1A2为主要的P450,参与JWH-018和AM2201的氧化。 d人尿代谢谱,每种主要酶表现出高亲和力(Km = 0.81–7.3μM)和低至高反应速度(Vmax = 0.0053–2.7 nmol产物·min −1 · nmol蛋白 -1 )。 CYP2C19、2D6、2E1和3A4在这些合成大麻素的肝代谢清除中的贡献极小(fm = <0.2)。体外研究表明,人类产生的主要代谢产物对CB1受体表现出高亲和力和内在活性,而CB1受体拮抗剂(6aR,10aR)-3-(1-甲磺酰基氨基-4-己炔-6-基)-6a,7,10,10a-四氢-6,6,9-三甲基-6H-二苯并[b,d]吡喃(O-2050)。本研究的结果提供了与“ K2”母体化合物及其人类代谢物的潜在毒理学特性相关的关键,缺失的数据,包括对大麻素受体的作用机理。

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