Wilde Maurice, Pichini Simona, Pacifici Roberta, Tagliabracci Adriano, Busardò Francesco Paolo, Auwärter Volker, Solimini Renata
Department of Forensic Toxicology, Institute of Forensic Medicine, Medical Center - University of Freiburg, Faculty of Medicine, University of Freiburg, Freiburg im Breisgau, Germany.
Hermann Staudinger Graduate School, University of Freiburg, Freiburg im Breisgau, Germany.
Front Pharmacol. 2019 Apr 5;10:238. doi: 10.3389/fphar.2019.00238. eCollection 2019.
Up to now, little is known about the metabolic pathways of new fentanyl analogs that have recently emerged on the drug markets worldwide with high potential for producing addiction and severe adverse effects including coma and death. For some of the compounds, limited information on the metabolism has been published, however, for others so far no information is available. Considering the well characterized metabolism of the pharmaceutically used opioid fentanyl and the so far available data, the metabolism of the new fentanyl analogs can be anticipated to generally involve reactions like hydrolysis, hydroxylation (and further oxidation steps), - and -dealkylation and -methylation. Furthermore, phase II metabolic reactions can be expected comprising glucuronide or sulfate conjugate formation. When analyzing blood and urine samples of acute intoxication cases or fatalities, the presence of metabolites can be crucial for confirmation of the uptake of such compounds and further interpretation. Here we present a review on the metabolic profiles of new fentanyl analogs responsible for a growing number of severe and fatal intoxications in the United States, Europe, Canada, Australia, and Japan in the last years, as assessed by a systematic search of the scientific literature and official reports.
到目前为止,对于全球毒品市场上最近出现的新型芬太尼类似物的代谢途径知之甚少,这些类似物极有可能导致成瘾以及包括昏迷和死亡在内的严重不良反应。对于其中一些化合物,关于其代谢的信息有限,然而,对于其他一些化合物,目前尚无相关信息。鉴于药用阿片类药物芬太尼的代谢情况已得到充分表征,以及目前已有的数据,可以预期新型芬太尼类似物的代谢通常会涉及水解、羟基化(以及进一步的氧化步骤)、去烷基化和甲基化等反应。此外,预计还会发生第二阶段代谢反应,包括形成葡萄糖醛酸或硫酸盐共轭物。在分析急性中毒病例或死亡案例的血液和尿液样本时,代谢物的存在对于确认此类化合物的摄入情况以及进一步解读至关重要。在此,我们通过系统检索科学文献和官方报告,对近年来在美国、欧洲、加拿大、澳大利亚和日本导致越来越多严重和致命中毒事件的新型芬太尼类似物的代谢概况进行综述。