Open Access
Open access
Pharmaceuticals, volume 14, issue 7, pages 668

Pharmacokinetic Properties of the Novel Synthetic Cannabinoid 5F-APINAC and Its Influence on Metabolites Associated with Neurotransmission in Rabbit Plasma

Ksenia M. Shestakova 1, 2
Natalia V Mesonzhnik 1, 3
Pavel A Markin 1, 2, 4
Natalia E. Moskaleva 1, 3, 4
Andrey A Nedorubov 5
Alex Brito 1
Roman M Kuznetsov 1
Natalia L Bochkareva 1
Alexey Kukharenko 1
Alexey V Lyundup 7
Franco Tagliaro 1, 8
Show full list: 13 authors
Publication typeJournal Article
Publication date2021-07-13
Journal: Pharmaceuticals
scimago Q1
SJR0.845
CiteScore6.1
Impact factor4.3
ISSN14248247
PubMed ID:  34358094
Drug Discovery
Pharmaceutical Science
Molecular Medicine
Abstract

The strong psychoactive effects of synthetic cannabinoids raise the need for the deeper studying of their neurometabolic effects. The pharmacokinetic properties of 5F-APINAC and its influence on metabolomics profiles associated with neurotransmission were investigated in rabbit plasma. Twelve rabbits divided into three groups received 1-mL 5F-APINAC at 0.1, 1 and 2 mg/kg. The intervention groups were compared with the controls. Sampling was performed at nine time points (0–24 h). Ultra-high-performance liquid chromatography–tandem mass spectrometry was used. The pharmacokinetics were dose-dependent (higher curve at a higher dose) with a rapid biotransformation, followed by gradual elimination within 24 h. The tryptophan concentrations abruptly decreased (p < 0.05) in all tested groups, returning to the basal levels after 6 h. 5-hydroxylindole acetic acid increased (p < 0.05) in the controls, but this trend was absent in the treated groups. The aspartic acid concentrations were elevated (p < 0.001) in the treated groups. L-kynurenine was elevated (p < 0.01) in the intervention groups receiving 1 mg/kg to 2 mg/kg. Dose-dependent elevations (p < 0.01) were found for kynurenic acid, xanthurenic acid and quinolinic acid (p < 0.01), whereas the anthranilic acid trends were decreased (p < 0.01). The indole-3-propionic acid and indole-3-carboxaldehyde trends were elevated (p < 0.05), whereas the indole-3-lactic acid trajectories were decreased (p < 0.01) in the intervention groups. 5F-APINAC administration had a rapid biotransformation and gradual elimination. The metabolites related to the kynurenine and serotonergic system/serotonin pathways, aspartic acid innervation system and microbial tryptophan catabolism were altered.

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