In Vitro and In Vivo Human Metabolism of Synthetic Cannabinoids FDU-PB-22 and FUB-PB-22

Journal Title: The AAPS Journal - Year 2016, Vol 18, Issue 2

Abstract

In 2014, FDU-PB-22 and FUB-PB-22, two novel synthetic cannabinoids, were detected in herbal blends in Japan, Russia, and Germany and were quickly added to their scheduled drugs list. Unfortunately, no human metabolism data are currently available, making it challenging to confirm their intake. The present study aims to identify appropriate analytical markers by investigating FDU-PB-22 and FUB-PB-22 metabolism in human hepatocytes and confirm the results in authentic urine specimens. For metabolic stability, 1 μM FDU-PB-22 and FUB-PB-22 was incubated with human liver microsomes for up to 1 h; for metabolite profiling, 10 μM was incubated with human hepatocytes for 3 h. Two authentic urine specimens from FDU-PB-22 and FUB-PB-22 positive cases were analyzed after β-glucuronidase hydrolysis. Metabolite identification in hepatocyte samples and urine specimens was accomplished by high-resolution mass spectrometry using information-dependent acquisition. Both FDU-PB-22 and FUB-PB-22 were rapidly metabolized in HLM with half-lives of 12.4 and 11.5 min, respectively. In human hepatocyte samples, we identified seven metabolites for both compounds, generated by ester hydrolysis and further hydroxylation and/or glucuronidation. After ester hydrolysis, FDU-PB-22 and FUB-PB-22 yielded the same metabolite M7, fluorobenzylindole-3-carboxylic acid (FBI-COOH). M7 and M6 (hydroxylated FBI-COOH) were the major metabolites. In authentic urine specimens after β-glucuronidase hydrolysis, M6 and M7 also were the predominant metabolites. Based on our study, we recommend M6 (hydroxylated FBI-COOH) and M7 (FBI-COOH) as suitable urinary markers for documenting FDU-PB-22 and/or FUB-PB-22 intake.

Authors and Affiliations

Xingxing Diao, Karl B. Scheidweiler, Ariane Wohlfarth, Shaokun Pang, Robert Kronstrand, Marilyn A. Huestis

Keywords

Related Articles

Multinomial Logistic Functions in Markov Chain Models of Sleep Architecture: Internal and External Validation and Covariate Analysis

The online version of this article (doi:10.1208/s12248-011-9287-4) contains supplementary material, which is available to authorized users.

Modeling and Simulation to Support Phase 2 Dose Selection for RG7652, a Fully Human Monoclonal Antibody Against Proprotein Convertase Subtilisin/Kexin Type 9

The online version of this article (doi:10.1208/s12248-015-9750-8) contains supplementary material, which is available to authorized users.

Lipid mediator informatics-lipidomics: Novel pathways in mapping resolution

Lipidomics, the systematic decoding of lipid-based information in biosystems, is composed of identifying and profiling lipids and lipid-derived mediators. As currently practiced, lipidomics can be subdivided into archite...

Targeted Delivery of Curcumin to Tumors via PEG-Derivatized FTS-Based Micellar System

The online version of this article (doi:10.1208/s12248-014-9595-6) contains supplementary material, which is available to authorized users.

Prediction of Hepatic Clearance in Human From In Vitro Data for Successful Drug Development

The in vivo metabolic clearance in human has been successfully predicted by using in vitro data of metabolic stability in cryopreserved preparations of human hepatocytes. In the predictions by human hepatocytes, the syst...

Download PDF file
  • EP ID EP680856
  • DOI  10.1208/s12248-016-9867-4
  • Views 45
  • Downloads 0

How To Cite

Xingxing Diao, Karl B. Scheidweiler, Ariane Wohlfarth, Shaokun Pang, Robert Kronstrand, Marilyn A. Huestis (2016). In Vitro and In Vivo Human Metabolism of Synthetic Cannabinoids FDU-PB-22 and FUB-PB-22. The AAPS Journal, 18(2), -. https://europub.co.uk./articles/-A-680856