Cargando…

25CN-NBOMe Metabolites in Rat Urine, Human Liver Microsomes and C. elegans—Structure Determination and Synthesis of the Most Abundant Metabolites

N-Benzylphenethylamines are novel psychedelic substances increasingly used for research, diagnostic, or recreational purposes. To date, only a few metabolism studies have been conducted for N-2-methoxybenzylated compounds (NBOMes). Thus, the available 2,5-dimethoxy-4-(2-((2-methoxybenzyl)amino)ethyl...

Descripción completa

Detalles Bibliográficos
Autores principales: Šuláková, Anna, Nykodemová, Jitka, Palivec, Petr, Jurok, Radek, Rimpelová, Silvie, Leonhardt, Tereza, Šíchová, Klára, Páleníček, Tomáš, Kuchař, Martin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8066366/
https://www.ncbi.nlm.nih.gov/pubmed/33807281
http://dx.doi.org/10.3390/metabo11040212
_version_ 1783682556658450432
author Šuláková, Anna
Nykodemová, Jitka
Palivec, Petr
Jurok, Radek
Rimpelová, Silvie
Leonhardt, Tereza
Šíchová, Klára
Páleníček, Tomáš
Kuchař, Martin
author_facet Šuláková, Anna
Nykodemová, Jitka
Palivec, Petr
Jurok, Radek
Rimpelová, Silvie
Leonhardt, Tereza
Šíchová, Klára
Páleníček, Tomáš
Kuchař, Martin
author_sort Šuláková, Anna
collection PubMed
description N-Benzylphenethylamines are novel psychedelic substances increasingly used for research, diagnostic, or recreational purposes. To date, only a few metabolism studies have been conducted for N-2-methoxybenzylated compounds (NBOMes). Thus, the available 2,5-dimethoxy-4-(2-((2-methoxybenzyl)amino)ethyl)benzonitrile (25CN-NBOMe) metabolism data are limited. Herein, we investigated the metabolic profile of 25CN-NBOMe in vivo in rats and in vitro in Cunninghamella elegans (C. elegans) mycelium and human liver microsomes. Phase I and phase II metabolites were first detected in an untargeted screening, followed by liquid chromatography-tandem mass spectrometry (LC-MS/MS) identification of the most abundant metabolites by comparison with in-house synthesized reference materials. The major metabolic pathways described within this study (mono- and bis-O-demethylation, hydroxylation at different positions, and combinations thereof, followed by the glucuronidation, sulfation, and/or N-acetylation of primary metabolites) generally correspond to the results of previously reported metabolism of several other NBOMes. The cyano functional group was either hydrolyzed to the respective amide or carboxylic acid or remained untouched. Differences between species should be taken into account in studies of the metabolism of novel substances.
format Online
Article
Text
id pubmed-8066366
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-80663662021-04-25 25CN-NBOMe Metabolites in Rat Urine, Human Liver Microsomes and C. elegans—Structure Determination and Synthesis of the Most Abundant Metabolites Šuláková, Anna Nykodemová, Jitka Palivec, Petr Jurok, Radek Rimpelová, Silvie Leonhardt, Tereza Šíchová, Klára Páleníček, Tomáš Kuchař, Martin Metabolites Article N-Benzylphenethylamines are novel psychedelic substances increasingly used for research, diagnostic, or recreational purposes. To date, only a few metabolism studies have been conducted for N-2-methoxybenzylated compounds (NBOMes). Thus, the available 2,5-dimethoxy-4-(2-((2-methoxybenzyl)amino)ethyl)benzonitrile (25CN-NBOMe) metabolism data are limited. Herein, we investigated the metabolic profile of 25CN-NBOMe in vivo in rats and in vitro in Cunninghamella elegans (C. elegans) mycelium and human liver microsomes. Phase I and phase II metabolites were first detected in an untargeted screening, followed by liquid chromatography-tandem mass spectrometry (LC-MS/MS) identification of the most abundant metabolites by comparison with in-house synthesized reference materials. The major metabolic pathways described within this study (mono- and bis-O-demethylation, hydroxylation at different positions, and combinations thereof, followed by the glucuronidation, sulfation, and/or N-acetylation of primary metabolites) generally correspond to the results of previously reported metabolism of several other NBOMes. The cyano functional group was either hydrolyzed to the respective amide or carboxylic acid or remained untouched. Differences between species should be taken into account in studies of the metabolism of novel substances. MDPI 2021-03-31 /pmc/articles/PMC8066366/ /pubmed/33807281 http://dx.doi.org/10.3390/metabo11040212 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Šuláková, Anna
Nykodemová, Jitka
Palivec, Petr
Jurok, Radek
Rimpelová, Silvie
Leonhardt, Tereza
Šíchová, Klára
Páleníček, Tomáš
Kuchař, Martin
25CN-NBOMe Metabolites in Rat Urine, Human Liver Microsomes and C. elegans—Structure Determination and Synthesis of the Most Abundant Metabolites
title 25CN-NBOMe Metabolites in Rat Urine, Human Liver Microsomes and C. elegans—Structure Determination and Synthesis of the Most Abundant Metabolites
title_full 25CN-NBOMe Metabolites in Rat Urine, Human Liver Microsomes and C. elegans—Structure Determination and Synthesis of the Most Abundant Metabolites
title_fullStr 25CN-NBOMe Metabolites in Rat Urine, Human Liver Microsomes and C. elegans—Structure Determination and Synthesis of the Most Abundant Metabolites
title_full_unstemmed 25CN-NBOMe Metabolites in Rat Urine, Human Liver Microsomes and C. elegans—Structure Determination and Synthesis of the Most Abundant Metabolites
title_short 25CN-NBOMe Metabolites in Rat Urine, Human Liver Microsomes and C. elegans—Structure Determination and Synthesis of the Most Abundant Metabolites
title_sort 25cn-nbome metabolites in rat urine, human liver microsomes and c. elegans—structure determination and synthesis of the most abundant metabolites
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8066366/
https://www.ncbi.nlm.nih.gov/pubmed/33807281
http://dx.doi.org/10.3390/metabo11040212
work_keys_str_mv AT sulakovaanna 25cnnbomemetabolitesinraturinehumanlivermicrosomesandcelegansstructuredeterminationandsynthesisofthemostabundantmetabolites
AT nykodemovajitka 25cnnbomemetabolitesinraturinehumanlivermicrosomesandcelegansstructuredeterminationandsynthesisofthemostabundantmetabolites
AT palivecpetr 25cnnbomemetabolitesinraturinehumanlivermicrosomesandcelegansstructuredeterminationandsynthesisofthemostabundantmetabolites
AT jurokradek 25cnnbomemetabolitesinraturinehumanlivermicrosomesandcelegansstructuredeterminationandsynthesisofthemostabundantmetabolites
AT rimpelovasilvie 25cnnbomemetabolitesinraturinehumanlivermicrosomesandcelegansstructuredeterminationandsynthesisofthemostabundantmetabolites
AT leonhardttereza 25cnnbomemetabolitesinraturinehumanlivermicrosomesandcelegansstructuredeterminationandsynthesisofthemostabundantmetabolites
AT sichovaklara 25cnnbomemetabolitesinraturinehumanlivermicrosomesandcelegansstructuredeterminationandsynthesisofthemostabundantmetabolites
AT palenicektomas 25cnnbomemetabolitesinraturinehumanlivermicrosomesandcelegansstructuredeterminationandsynthesisofthemostabundantmetabolites
AT kucharmartin 25cnnbomemetabolitesinraturinehumanlivermicrosomesandcelegansstructuredeterminationandsynthesisofthemostabundantmetabolites