首页> 美国卫生研究院文献>Pharmacology Research Perspectives >Identifying cytochrome P450s involved in oxidative metabolism of synthetic cannabinoid N‐(adamantan‐1‐yl)‐1‐(5‐fluoropentyl)‐1H‐indole‐3‐carboxamide (STS‐135)
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Identifying cytochrome P450s involved in oxidative metabolism of synthetic cannabinoid N‐(adamantan‐1‐yl)‐1‐(5‐fluoropentyl)‐1H‐indole‐3‐carboxamide (STS‐135)

机译:识别参与合成大麻素N-(金刚烷-1-基)-1-(5-氟戊基)-1H-吲哚-3-羧酰胺(STS-135)氧化代谢的细胞色素P450

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摘要

Synthetic cannabinoids (SCBs), designer drugs marketed as legal alternatives to marijuana, act as ligands to cannabinoid receptors; however, they have increased binding affinity and potency, resulting in toxicity symptoms such as cardiovascular incidents, seizures, and potentially death. ‐(adamantan‐1‐yl)‐1‐(5‐fluoropentyl)‐1 ‐indole‐3‐carboxamide (STS‐135) is a third generation SCB. When incubated with hepatocytes, it undergoes oxidation, hydrolysis, and glucuronidation, resulting in 29 metabolites, with monohydroxy STS‐135 (M25) and dihydroxy STS‐135 (M21) being the predominant metabolites. The enzymes responsible for this oxidative metabolism were unknown. Thus, the aim of this study was to identify the cytochrome P450 (P450s or CYPs) enzymes involved in the oxidative metabolism of STS‐135. In this study, STS‐135 was incubated with liver, intestinal, and brain microsomes and recombinant P450s to determine the enzymes involved in its metabolism. Metabolite quantification was carried out using ultra‐performance liquid chromatography. STS‐135 was extensively metabolized in HLMs and HIMs. Screening assays indicated CYP3A4 and CYP3A5 could be responsible for STS‐135’s oxidation. Through incubations with genotyped HLMs, CYP3A4 was identified as the primary oxidative enzyme. Interestingly, CYP2J2, a P450 isoform expressed in cardiovascular tissues, showed high activity towards the formation of M25 with a value of 11.4 μmol/L. Thus, it was concluded that STS‐135 was primarily metabolized by CYP3A4 but may have extrahepatic metabolic pathways as well. Upon exposure to STS‐135, individuals with low CYP3A4 activity could retain elevated blood concentration, resulting in toxicity. Additionally, CYP2J2 may aid in protecting against STS‐135‐induced cardiovascular toxicity.
机译:合成大麻素(SCB)是作为大麻的合法替代品销售的名牌药物,是大麻素受体的配体;然而,它们具有增强的结合亲和力和效力,导致毒性症状,如心血管事件,癫痫发作和潜在的死亡。 -(金刚烷-1-基)-1-(5-氟戊基)-1-吲哚-3-羧酰胺(STS-135)是第三代SCB。与肝细胞一起孵育时,它会进行氧化,水解和葡萄糖醛酸化,产生29种代谢产物,其中主要代谢产物为单羟基STS-135(M25)和二羟基STS-135(M21)。负责这种氧化代谢的酶是未知的。因此,本研究的目的是鉴定参与STS-135氧化代谢的细胞色素P450(P450或CYP)酶。在这项研究中,将STS-135与肝,肠和脑微粒体以及重组P450一起温育,以确定参与其代谢的酶。代谢物定量使用超高效液相色谱仪进行。 STS-135在HLM和HIM中广泛代谢。筛选试验表明,CYP3A4和CYP3A5可能与STS-135的氧化有关。通过与基因型HLM的温育,CYP3A4被鉴定为主要的氧化酶。有趣的是,CYP2J2是一种在心血管组织中表达的P450亚型,对M25的形成具有很高的活性 值为11.4μmol/ L。因此,可以得出结论,STS-135主要由CYP3A4代谢,但也可能具有肝外代谢途径。暴露于STS-135后,CYP3A4活性低的个体可能会保持较高的血药浓度,从而导致毒性。此外,CYP2J2可能有助于预防STS-135诱导的心血管毒性。

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