SystematicIn VitroMetabolic Profiling of the OXIZID Synthetic Cannabinoids BZO-4en-POXIZID, BZO-POXIZID, 5F-BZO-POXIZID, BZO-HEXOXIZID and BZO-CHMOXIZID

Author:

Watanabe Shimpei1ORCID,Baginski Steven2ORCID,Iwai Takahiro1,Matsushita Ritsuko1,Takatsu Masahisa1,Nakanishi Toshio1,Lindbom Karin3,Mckenzie Craig24,Vikingsson Svante35ORCID,Kronstrand Robert36ORCID,Gréen Henrik36,Seto Yasuo1

Affiliation:

1. Forensic Science Group, Photon Science Research Division, RIKEN SPring-8 Center , 1-1-1 Kouto, Sayo-cho, Sayo-gun, Hyogo 679-5148, Japan

2. Leverhulme Research Centre for Forensic Science, School of Science and Engineering, University of Dundee, Fleming Laboratory , Small’s Lane, Dundee DD1 4HN, UK

3. Division of Clinical Chemistry and Pharmacology, Department of Biomedical and Clinical Sciences, Linköping University , Building 420, Linköping 581 83, Sweden

4. Chiron AS , Stiklestadveien 1, Trondheim 7041, Norway

5. Center for Forensic Science, RTI International , 3040 East Cornwallis Rd., Research Triangle Park, NC 27709, USA

6. Department of Forensic Genetics and Forensic Toxicology, National Board of Forensic Medicine , Artillerigatan 12, Linköping 587 58, Sweden

Abstract

AbstractA new class of synthetic cannabinoids termed OXIZIDs has recently emerged on the recreational drug market. In order to continue the detection of new drugs in biological specimens, the identification of metabolites is essential. The aim of this study was to elucidate the metabolites of BZO-4en-POXIZID produced in human liver microsomes (HLMs) and human hepatocyte incubations and to compare the results with closely related analogs using the same experimental setup. Each drug was incubated for 1 h in HLM and BZO-4en-POXIZID was also incubated in human hepatocytes for up to 3 h. Subsequently, the incubates were analyzed by liquid chromatography–high-resolution mass spectrometry. BZO-4en-POXIZID metabolites were obtained in the incubation with HLMs and human hepatocytes, via the metabolic pathways of dihydrodiol formation, hydroxylation, reduction of the alkene bond and glucuronidation. The major metabolic pathway was found to be dihydrodiol formation at the pentenyl tail moiety. BZO-POXIZID, 5 F-BZO-POXIZID, BZO-HEXOXIZID and BZO-CHMOXIZID underwent similar metabolism to those reported in the literature, via the metabolic pathways of N-dealkylation, hydroxylation, ketone formation and oxidative defluorination (to alcohol or carboxylic acid). The results suggest that OXIZIDs are mainly metabolized at the N-alkyl moiety and the major metabolic pathways are hydroxylation when the N-alkyl moiety is a simple hydrocarbon, whereas functional-group-specific pathways (dihydrodiol formation and oxidative defluorination) are preferred when the moiety contains specific functional groups (alkene or fluoro), as has been observed for other synthetic cannabinoids. The major metabolites generated via these major metabolic pathways should serve as useful analytical targets for urine analysis. Furthermore, the higher abundance of glucuronidated metabolite suggests that enzymatic hydrolysis of glucuronides may be necessary for urine analysis to increase phase I metabolite concentration and improve detection.

Funder

Sweden’s Innovation Agency

Eurostars-2 joint programme

Strategic Research Area in Forensic Sciences (Styrkeområdet forensiska vetenskaper) at Linköping University

Leverhulme Trust

Japan Society for the Promotion of Science

Publisher

Oxford University Press (OUP)

Subject

Chemical Health and Safety,Health, Toxicology and Mutagenesis,Toxicology,Environmental Chemistry,Analytical Chemistry

Reference22 articles.

1. European Drug Report 2022: Trends and Developments;European Monitoring Centre for Drugs and Drug Addiction,2022

2. World drug report 2022;United Nations Office on Drugs and Crime,2022

3. Recommended Methods for the Identification and Analysis of Synthetic Cannabinoid Receptor Agonists in Seized Materials;United Nations Office on Drugs and Crime,2020

4. Post-mortem toxicology: a systematic review of death cases involving synthetic cannabinoid receptor agonists;Giorgetti;Frontiers in Psychiatry,2020

5. Design and synthesis of a novel series of N-alkyl isatin acylhydrazone derivatives that act as selective cannabinoid receptor 2 agonists for the treatment of neuropathic pain;Diaz;Journal of Medicinal Chemistry,2008

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