In Vitro and In Vivo Metabolite Identification Studies for the New Synthetic Opioids Acetylfentanyl, Acrylfentanyl, Furanylfentanyl, and 4-Fluoro-Isobutyrylfentanyl

被引:100
作者
Watanabe, Shimpei [1 ]
Vikingsson, Svante [2 ]
Roman, Markus [3 ]
Green, Henrik [2 ,3 ]
Kronstrand, Robert [2 ,3 ]
Wohlfarth, Ariane [2 ,3 ]
机构
[1] UTS, Sch Math & Phys Sci, Ctr Forens Sci, POB 123,Broadway, Sydney, NSW 2007, Australia
[2] Linkoping Univ, Div Drug Res, Dept Med Hlth Sci, S-58185 Linkoping, Sweden
[3] Natl Board Forens Med, Dept Forens Genet & Forens Toxicol, S-58758 Linkoping, Sweden
来源
AAPS JOURNAL | 2017年 / 19卷 / 04期
关键词
authentic human urine samples; fentanyl analogs; human hepatocytes; LC-HRMS; metabolite identification; RESOLUTION MASS-SPECTROMETRY; SWEDISH STRIDA PROJECT; HUMAN LIVER-MICROSOMES; DESIGNER DRUGS; HUMAN HEPATOCYTES; 1-(2-PHENETHYL)-4-(N-PROPIONYLANILINO)PIPERIDINE FENTANYL; FUTURE-PROSPECTS; ACETYL FENTANYL; LC-MS/MS; URINE;
D O I
10.1208/s12248-017-0070-z
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
New fentanyl analogs have recently emerged as new psychoactive substances and have caused numerous fatalities worldwide. To determine if the new analogs follow the same metabolic pathways elucidated for fentanyl and known fentanyl analogs, we performed in vitro and in vivo metabolite identification studies for acetylfentanyl, acrylfentanyl, 4-fluoro-isobutyrylfentanyl, and furanylfentanyl. All compounds were incubated at 10 mu M with pooled human hepatocytes for up to 5 h. For each compound, four or five authentic human urine samples from autopsy cases with and without enzymatic hydrolysis were analyzed. Data acquisition was performed in data-dependent acquisition mode during liquid chromatography high-resolution mass spectrometry analyses. Data was analyzed (1) manually based on predicted biotransformations and (2) with MetaSense software using data-driven search algorithms. Acetylfentanyl, acrylfentanyl, and 4-fluoro-isobutyrylfentanyl were predominantly metabolized by N-dealkylation, cleaving off the phenethyl moiety, monohydroxylation at the ethyl linker and piperidine ring, as well as hydroxylation/methoxylation at the phenyl ring. In contrast, furanylfentanyl's major metabolites were generated by amide hydrolysis and dihydrodiol formation, while the nor-metabolite was minor or not detected in case samples at all. In general, in vitro results matched the in vivo findings well, showing identical biotransformations in each system. Phase II conjugation was observed, particularly for acetylfentanyl. Based on our results, we suggest the following specific and abundant metabolites as analytical targets in urine: a hydroxymethoxy and monohydroxylated metabolite for acetylfentanyl, a monohydroxy and dihydroxy metabolite for acrylfentanyl, two monohydroxy metabolites and a hydroxymethoxy metabolite for 4-fluoro-isobutyrylfentanyl, and a dihydrodiol metabolite and the amide hydrolysis metabolite for furanylfentanyl.
引用
收藏
页码:1102 / 1122
页数:21
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