Cargando…

In Vitro Biotransformation of Two Human CYP3A Probe Substrates and Their Inhibition during Early Zebrafish Development

At present, the zebrafish embryo is increasingly used as an alternative animal model to screen for developmental toxicity after exposure to xenobiotics. Since zebrafish embryos depend on their own drug-metabolizing capacity, knowledge of their intrinsic biotransformation is pivotal in order to corre...

Descripción completa

Detalles Bibliográficos
Autores principales: Verbueken, Evy, Alsop, Derek, Saad, Moayad A., Pype, Casper, Van Peer, Els M., Casteleyn, Christophe R., Van Ginneken, Chris J., Wilson, Joanna, Van Cruchten, Steven J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5297846/
https://www.ncbi.nlm.nih.gov/pubmed/28117738
http://dx.doi.org/10.3390/ijms18010217
_version_ 1782505796111695872
author Verbueken, Evy
Alsop, Derek
Saad, Moayad A.
Pype, Casper
Van Peer, Els M.
Casteleyn, Christophe R.
Van Ginneken, Chris J.
Wilson, Joanna
Van Cruchten, Steven J.
author_facet Verbueken, Evy
Alsop, Derek
Saad, Moayad A.
Pype, Casper
Van Peer, Els M.
Casteleyn, Christophe R.
Van Ginneken, Chris J.
Wilson, Joanna
Van Cruchten, Steven J.
author_sort Verbueken, Evy
collection PubMed
description At present, the zebrafish embryo is increasingly used as an alternative animal model to screen for developmental toxicity after exposure to xenobiotics. Since zebrafish embryos depend on their own drug-metabolizing capacity, knowledge of their intrinsic biotransformation is pivotal in order to correctly interpret the outcome of teratogenicity assays. Therefore, the aim of this in vitro study was to assess the activity of cytochrome P450 (CYP)—a group of drug-metabolizing enzymes—in microsomes from whole zebrafish embryos (ZEM) of 5, 24, 48, 72, 96 and 120 h post-fertilization (hpf) by means of a mammalian CYP substrate, i.e., benzyloxy-methyl-resorufin (BOMR). The same CYP activity assays were performed in adult zebrafish liver microsomes (ZLM) to serve as a reference for the embryos. In addition, activity assays with the human CYP3A4-specific Luciferin isopropyl acetal (Luciferin-IPA) as well as inhibition studies with ketoconazole and CYP3cide were carried out to identify CYP activity in ZLM. In the present study, biotransformation of BOMR was detected at 72 and 96 hpf; however, metabolite formation was low compared with ZLM. Furthermore, Luciferin-IPA was not metabolized by the zebrafish. In conclusion, the capacity of intrinsic biotransformation in zebrafish embryos appears to be lacking during a major part of organogenesis.
format Online
Article
Text
id pubmed-5297846
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-52978462017-02-10 In Vitro Biotransformation of Two Human CYP3A Probe Substrates and Their Inhibition during Early Zebrafish Development Verbueken, Evy Alsop, Derek Saad, Moayad A. Pype, Casper Van Peer, Els M. Casteleyn, Christophe R. Van Ginneken, Chris J. Wilson, Joanna Van Cruchten, Steven J. Int J Mol Sci Article At present, the zebrafish embryo is increasingly used as an alternative animal model to screen for developmental toxicity after exposure to xenobiotics. Since zebrafish embryos depend on their own drug-metabolizing capacity, knowledge of their intrinsic biotransformation is pivotal in order to correctly interpret the outcome of teratogenicity assays. Therefore, the aim of this in vitro study was to assess the activity of cytochrome P450 (CYP)—a group of drug-metabolizing enzymes—in microsomes from whole zebrafish embryos (ZEM) of 5, 24, 48, 72, 96 and 120 h post-fertilization (hpf) by means of a mammalian CYP substrate, i.e., benzyloxy-methyl-resorufin (BOMR). The same CYP activity assays were performed in adult zebrafish liver microsomes (ZLM) to serve as a reference for the embryos. In addition, activity assays with the human CYP3A4-specific Luciferin isopropyl acetal (Luciferin-IPA) as well as inhibition studies with ketoconazole and CYP3cide were carried out to identify CYP activity in ZLM. In the present study, biotransformation of BOMR was detected at 72 and 96 hpf; however, metabolite formation was low compared with ZLM. Furthermore, Luciferin-IPA was not metabolized by the zebrafish. In conclusion, the capacity of intrinsic biotransformation in zebrafish embryos appears to be lacking during a major part of organogenesis. MDPI 2017-01-22 /pmc/articles/PMC5297846/ /pubmed/28117738 http://dx.doi.org/10.3390/ijms18010217 Text en © 2017 by the authors; 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Verbueken, Evy
Alsop, Derek
Saad, Moayad A.
Pype, Casper
Van Peer, Els M.
Casteleyn, Christophe R.
Van Ginneken, Chris J.
Wilson, Joanna
Van Cruchten, Steven J.
In Vitro Biotransformation of Two Human CYP3A Probe Substrates and Their Inhibition during Early Zebrafish Development
title In Vitro Biotransformation of Two Human CYP3A Probe Substrates and Their Inhibition during Early Zebrafish Development
title_full In Vitro Biotransformation of Two Human CYP3A Probe Substrates and Their Inhibition during Early Zebrafish Development
title_fullStr In Vitro Biotransformation of Two Human CYP3A Probe Substrates and Their Inhibition during Early Zebrafish Development
title_full_unstemmed In Vitro Biotransformation of Two Human CYP3A Probe Substrates and Their Inhibition during Early Zebrafish Development
title_short In Vitro Biotransformation of Two Human CYP3A Probe Substrates and Their Inhibition during Early Zebrafish Development
title_sort in vitro biotransformation of two human cyp3a probe substrates and their inhibition during early zebrafish development
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5297846/
https://www.ncbi.nlm.nih.gov/pubmed/28117738
http://dx.doi.org/10.3390/ijms18010217
work_keys_str_mv AT verbuekenevy invitrobiotransformationoftwohumancyp3aprobesubstratesandtheirinhibitionduringearlyzebrafishdevelopment
AT alsopderek invitrobiotransformationoftwohumancyp3aprobesubstratesandtheirinhibitionduringearlyzebrafishdevelopment
AT saadmoayada invitrobiotransformationoftwohumancyp3aprobesubstratesandtheirinhibitionduringearlyzebrafishdevelopment
AT pypecasper invitrobiotransformationoftwohumancyp3aprobesubstratesandtheirinhibitionduringearlyzebrafishdevelopment
AT vanpeerelsm invitrobiotransformationoftwohumancyp3aprobesubstratesandtheirinhibitionduringearlyzebrafishdevelopment
AT casteleynchristopher invitrobiotransformationoftwohumancyp3aprobesubstratesandtheirinhibitionduringearlyzebrafishdevelopment
AT vanginnekenchrisj invitrobiotransformationoftwohumancyp3aprobesubstratesandtheirinhibitionduringearlyzebrafishdevelopment
AT wilsonjoanna invitrobiotransformationoftwohumancyp3aprobesubstratesandtheirinhibitionduringearlyzebrafishdevelopment
AT vancruchtenstevenj invitrobiotransformationoftwohumancyp3aprobesubstratesandtheirinhibitionduringearlyzebrafishdevelopment