School of Chemistry, The University of Sydney , Camperdown, NSW 2006, Australia.
Department of Biomedical Sciences, Macquarie University , Sydney, NSW 2109, Australia.
ACS Chem Neurosci. 2017 Aug 16;8(8):1673-1680. doi: 10.1021/acschemneuro.7b00116. Epub 2017 Jun 8.
Synthetic cannabinoids (SCs) containing a 1-pentyl-1-H substituted indole or indazole are abused around the world and are associated with an array of serious side effects. These compounds undergo extensive phase 1 metabolism after ingestion with little understanding whether these metabolites are contributing to the cannabimimetic activity of the drugs. This work presents the synthesis and pharmacological characterization of the major metabolites of two high concern SCs; APICA and ADB-PINACA. In a fluorometric assay of membrane potential, all metabolites that did not contain a carboxylic acid functionality retained potent activity at both the CB (EC = 14-787 nM) and CB (EC = 5.5-291 nM) receptors regardless of heterocyclic core or 3-carboxamide substituent. Of note were the 5-hydroxypentyl and 4-pentanone metabolites which showed significant increases in CB functional selectivity. These results suggest that the metabolites of SCs potentially contribute to the overall pharmacological profile of these drugs.
合成大麻素(SCs)含有 1-戊基-1-H 取代的吲哚或吲唑,在全球范围内被滥用,并与一系列严重的副作用有关。这些化合物在摄入后会进行广泛的第一相代谢,但对于这些代谢物是否对药物的大麻样活性有贡献知之甚少。这项工作介绍了两种高关注 SCs(APICA 和 ADB-PINACA)的主要代谢物的合成和药理学特征。在膜电位的荧光测定中,所有不含羧酸官能团的代谢物在 CB(EC = 14-787 nM)和 CB(EC = 5.5-291 nM)受体上均保持着强烈的活性,无论杂环核心或 3-羧酰胺取代基如何。值得注意的是 5-羟戊基和 4-戊酮代谢物,它们显示出 CB 功能选择性的显著增加。这些结果表明,SCs 的代谢物可能对这些药物的整体药理学特征有贡献。