<p>At a time when synthetic drugs are emerging as a critical threat to users, the consumption of synthetic cannabinoid receptor agonists has become emblematic of the French overseas territory of Mayotte, aka “la Chimique.” On this island, 8 sampling campaigns of this drug were performed between September 22 and September 23: 193 samples were collected. Among them, 21 contained ADB-FUBIATA. This synthetic cannabinoid receptor agonist presented maximal concentrations. To verify the feasibility of further epidemiological studies based on wastewater and with a view to forensic and ecotoxicological concerns since metabolites are known to be capable of altering the environment, the authors studied the hepatic metabolism of ADB-FUBIATA using HLMs and LC-HMRS. For tracking ADB-FUBIATA, the apparently most relevant metabolite is proposed, i.e., the M03 metabolite (C<sub>23</sub>H<sub>26</sub>FN<sub>3</sub>O<sub>3</sub>, HMRS target must be [M<sup>+</sup>H<sup>+</sup>] m/z 412.2031) resulting from ADB-FUBIATA hepatic hydroxylation, but persistent in the wastewater context. This proposal remains cautious, since it is based on a metabolization rate of 10% estimated on the basis of the intensity of the chromatographic peak area. Nevertheless, to confirm the usefulness and viability of detecting ADB-FUBIATA metabolites in wastewater, it is necessary to carry out analytical confirmation on real samples.</p>

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Elucidation of human metabolism of ADB-FUBIATA for population exposure assessment

  • Alexandr Gish,
  • Alexandre Peyré,
  • Camille Richeval,
  • Eric Pleignet,
  • Victoire Cottereau,
  • Jean-Michel Gaulier,
  • Damien Alain Devault

摘要

At a time when synthetic drugs are emerging as a critical threat to users, the consumption of synthetic cannabinoid receptor agonists has become emblematic of the French overseas territory of Mayotte, aka “la Chimique.” On this island, 8 sampling campaigns of this drug were performed between September 22 and September 23: 193 samples were collected. Among them, 21 contained ADB-FUBIATA. This synthetic cannabinoid receptor agonist presented maximal concentrations. To verify the feasibility of further epidemiological studies based on wastewater and with a view to forensic and ecotoxicological concerns since metabolites are known to be capable of altering the environment, the authors studied the hepatic metabolism of ADB-FUBIATA using HLMs and LC-HMRS. For tracking ADB-FUBIATA, the apparently most relevant metabolite is proposed, i.e., the M03 metabolite (C23H26FN3O3, HMRS target must be [M+H+] m/z 412.2031) resulting from ADB-FUBIATA hepatic hydroxylation, but persistent in the wastewater context. This proposal remains cautious, since it is based on a metabolization rate of 10% estimated on the basis of the intensity of the chromatographic peak area. Nevertheless, to confirm the usefulness and viability of detecting ADB-FUBIATA metabolites in wastewater, it is necessary to carry out analytical confirmation on real samples.