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通过肝细胞和高分辨率质谱对邻、间和对氟芬太尼的代谢产物进行分析。

Metabolite Profiling of Ortho-, Meta- and Para-Fluorofentanyl by Hepatocytes and High-Resolution Mass Spectrometry.

机构信息

Department of Clinical Pharmacology, St. Olav University Hospital, Trondheim, Norway.

Department of Clinical and Molecular Medicine, Norwegian University of Science and Technology, Trondheim, Norway.

出版信息

J Anal Toxicol. 2020 Mar 7;44(2):140-148. doi: 10.1093/jat/bkz081.

Abstract

New psychoactive substances are emerging on the illegal drug market. Synthetic opioids including fentanyl analogues are of special concern due to their high potency. This indicates the possibility of low drug concentrations in vivo and calls for sensitive analytical methods and identification of the most appropriate analytical targets. In this study the in vitro metabolism of ortho-, meta- and para-fluorofentanyl, three fluorinated derivatives of fentanyl, has been investigated using human hepatocytes and compared to the results from an authentic human urine sample. Based on knowledge on the metabolism of similar fentanyl analogues N-dealkylation and hydroxylation was hypothesized to be the most central pathways. The three fluorofentanyl isomers were incubated with pooled human hepatocytes at 1, 3 and 5 h. Liquid chromatography quadrupole time of flight mass spectrometry operating in data-dependent mode was used to analyse the hepatocyte samples, as well as the hydrolysed and non-hydrolysed authentic urine sample. Data were analysed by a targeted approach with a database of potential metabolites. The major metabolite formed in vitro was the N-dealkylation product norfluorofentanyl. In addition various hydroxylated metabolites, a N-oxide, dihydrodiol metabolites and a hydroxymethoxy metabolite were found. In total, 14 different metabolites were identified for each fluorofentanyl isomer. In the authentic urine sample, three metabolites were detected in addition to the ortho-fluorofentanyl parent compound, with hydroxymethoxy metabolite having the highest abundance followed by norfluorofentanyl and a metabolite hydroxylated on the ethylphenyl ring. This in vitro study showed that the metabolic pattern for ortho-, meta-, and para-fluorofentanyl was close to those previously reported for other fentanyl analogues. We suggest that the hydroxymethoxy metabolite and the metabolite hydroxylated on the ethylphenyl ring should be the metabolites primarily investigated in further studies to determine the most appropriate marker for intake of fluorofentanyl derivatives in urine drug screening for human subjects.

摘要

新精神活性物质不断出现在非法毒品市场上。由于其高效力,包括芬太尼类似物在内的合成阿片类药物特别令人关注。这表明体内药物浓度可能较低,因此需要使用灵敏的分析方法并确定最合适的分析目标。在这项研究中,使用人肝细胞研究了三种氟芬太尼(芬太尼的三种氟化衍生物)的体外代谢,并将结果与真实的人体尿液样本进行了比较。基于对类似芬太尼类似物代谢的了解,假设 N-脱烷基化和羟化是最主要的途径。将三种氟芬太尼异构体在 1、3 和 5 小时与混合人肝细胞孵育。使用液质联用四极杆飞行时间质谱仪以数据依赖模式分析肝细胞样品,以及水解和未水解的真实尿液样品。通过针对潜在代谢物数据库的靶向方法分析数据。体外形成的主要代谢物是 N-去烷基化产物诺氟芬太尼。此外,还发现了各种羟化代谢物、N-氧化物、二氢二醇代谢物和羟甲氧基代谢物。对于每种氟芬太尼异构体,总共鉴定出 14 种不同的代谢物。在真实的尿液样本中,除了邻氟芬太尼母体化合物外,还检测到三种代谢物,羟甲氧基代谢物的丰度最高,其次是诺氟芬太尼和乙基苯环上羟化的代谢物。这项体外研究表明,邻、间和对氟芬太尼的代谢模式与其他芬太尼类似物先前报道的代谢模式相似。我们建议,羟甲氧基代谢物和乙基苯环上羟化的代谢物应该是进一步研究中主要研究的代谢物,以确定在人体尿液药物筛选中检测氟芬太尼衍生物摄入的最合适标志物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a9b/7238673/a13be8ab6917/bkz081f1.jpg

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