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新型合成大麻素APICA及其氟化类似物的I期代谢研究

Study on the phase I metabolism of novel synthetic cannabinoids, APICA and its fluorinated analogue.

作者信息

Sobolevsky Tim, Prasolov Ilya, Rodchenkov Grigory

机构信息

Moscow Antidoping Centre, 105005, Moscow, Elizavetinsky per. 10, Russia.

出版信息

Drug Test Anal. 2015 Feb;7(2):131-42. doi: 10.1002/dta.1756. Epub 2014 Nov 26.

Abstract

The data are reported for an in vitro metabolism study of two novel synthetic cannabinoids, N-(1-adamantyl)-1-pentyl-1H-indole-3-carboxamide (APICA) and its fluorinated analog N-(1-adamantyl)-1-(5-fluoropentyl)-1H-indole-3-carboxamide (5F-APICA, STS-135), which are active ingredients of smoking mixtures sold in Russia since 2012. The cannabinoids were isolated from herbal mixtures using preparative liquid chromatography and then incubated with human liver microsomes (HLMs). The formed metabolites were characterized by liquid chromatography - triple quadrupole mass spectrometry and high-resolution mass spectrometry with electrospray ionization in positive ion mode. It was found that HLMs produce mono-, di-, and trihydroxylated metabolites, as well as N-desalkyl metabolites, which can be further hydroxylated; the amide bond resisted the metabolic cleavage. For 5F-APICA, a series of oxidative defluorination products formed as well. For in vivo confirmation of the formed in vitro metabolites, spot urine samples from drug users were analyzed with the created method. It was shown that for the detection of APICA abuse, the preferred metabolites are the di- and tri-hydroxylated species, while in case of 5F-APICA, a monohydroxy metabolite is a better target. The N-despentyl (desfluoropentyl) hydroxyadamantyl metabolite also provides good retrospectivity to confirm the administration of any of these cannabinoids.

摘要

本文报道了两种新型合成大麻素N-(1-金刚烷基)-1-戊基-1H-吲哚-3-甲酰胺(APICA)及其氟化类似物N-(1-金刚烷基)-1-(5-氟戊基)-1H-吲哚-3-甲酰胺(5F-APICA,STS-135)的体外代谢研究数据,自2012年以来,这两种物质是俄罗斯销售的吸烟混合物中的活性成分。使用制备液相色谱法从草药混合物中分离出大麻素,然后与人肝微粒体(HLM)一起孵育。通过液相色谱-三重四极杆质谱法和正离子模式下电喷雾电离的高分辨率质谱法对形成的代谢物进行表征。研究发现,HLM可产生单羟基、二羟基和三羟基代谢物,以及N-去烷基代谢物,后者可进一步羟基化;酰胺键抵抗代谢裂解。对于5F-APICA,还形成了一系列氧化脱氟产物。为了对体外形成的代谢物进行体内确认,使用所建立的方法对吸毒者的即时尿样进行了分析。结果表明,对于检测APICA滥用,首选的代谢物是二羟基和三羟基物质,而对于5F-APICA,单羟基代谢物是更好的检测目标。N-去戊基(去氟戊基)羟基金刚烷代谢物也具有良好的追溯性,可用于确认这些大麻素中的任何一种的使用情况。

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