Study of the in vitro and in vivo metabolism of 4-HO-MET
•in vitro and in vivo metabolism of 4-HO-MET.•12 in vitro metabolites.•4 in vivo metabolites.•Hydroxylation, carboxylation, deamination and glucuronidation. 4-Hydroxy-N-methyl-N-ethyltryptamine (4-HO-MET) is a new psychoactive substance (NPS) of the chemical class of tryptamines. It shows structural...
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Veröffentlicht in: | Forensic science international 2018-09, Vol.290, p.103-110 |
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Sprache: | eng |
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Zusammenfassung: | •in vitro and in vivo metabolism of 4-HO-MET.•12 in vitro metabolites.•4 in vivo metabolites.•Hydroxylation, carboxylation, deamination and glucuronidation.
4-Hydroxy-N-methyl-N-ethyltryptamine (4-HO-MET) is a new psychoactive substance (NPS) of the chemical class of tryptamines. It shows structural similarities to the endogenous neurotransmitter serotonin, and is a serotonergic hallucinogen, affecting emotional, motoric, and cognitive functions. The knowledge about its biotransformation is mandatory to confirm the abuse of the substance by urine analysis in forensic cases. Therefore, phase I metabolites were generated by the use of the pooled human liver microsomes (pHLM) in vitro model and analyzed by high-performance liquid chromatography high-resolution tandem mass spectrometry with information-dependent acquisition (HPLC-IDA-HR-MS/MS). Furthermore, three authentic urine samples was analyzed and results were compared: 12 different in vitro and 4 in vivo metabolites were found. The predominant biotransformation steps observed in vitro were mono- or dihydroxylation of 4-HO-MET, besides demethylation, demethylation in combination with monohydroxylation, formation of a carboxylic acid, deethylation, and oxidative deamination. In vivo, monohydroxylation, and glucuronidation were detected. A metabolic pathway based on these results was proposed.
For the analysis of urine samples in forensic cases, the N-oxide metabolite and the HO-alkyl metabolite are recommended as target compounds, besides the glucuronides of 4-HO-MET and the parent compound 4-HO-MET itself. |
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ISSN: | 0379-0738 1872-6283 |
DOI: | 10.1016/j.forsciint.2018.06.037 |