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Zearalenone Does Not Show Genotoxic Effects in the Drosophila melanogaster Wing Spot Test, but It Induces Oxidative Imbalance, Development, and Fecundity Alterations

Zearalenone (ZEN) is a non-steroidal mycoestrogen produced by the Fusarium genus. ZEN and its metabolites compete with 17-beta estradiol for cytosolic estrogen receptors, causing reproductive alterations in vertebrates. ZEN has also been associated with toxic and genotoxic effects, as well as an inc...

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Autores principales: Santos-Cruz, Luis Felipe, Ponciano-Gómez, Alberto, Torres-Gregorio, Juan Tomás, Ramírez-Cruz, Bertha Guadalupe, Vázquez-Gómez, Gerardo, Hernández-Portilla, Luis Barbo, Flores-Ortiz, Cesar Mateo, Dueñas-García, Irma Elena, Heres-Pulido, María Eugenia, Castañeda-Partida, Laura, Durán-Díaz, Ángel, Campos-Aguilar, Myriam, Sigrist-Flores, Santiago Cristobal, Piedra-Ibarra, Elías
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10301386/
https://www.ncbi.nlm.nih.gov/pubmed/37368659
http://dx.doi.org/10.3390/toxins15060358
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author Santos-Cruz, Luis Felipe
Ponciano-Gómez, Alberto
Torres-Gregorio, Juan Tomás
Ramírez-Cruz, Bertha Guadalupe
Vázquez-Gómez, Gerardo
Hernández-Portilla, Luis Barbo
Flores-Ortiz, Cesar Mateo
Dueñas-García, Irma Elena
Heres-Pulido, María Eugenia
Castañeda-Partida, Laura
Durán-Díaz, Ángel
Campos-Aguilar, Myriam
Sigrist-Flores, Santiago Cristobal
Piedra-Ibarra, Elías
author_facet Santos-Cruz, Luis Felipe
Ponciano-Gómez, Alberto
Torres-Gregorio, Juan Tomás
Ramírez-Cruz, Bertha Guadalupe
Vázquez-Gómez, Gerardo
Hernández-Portilla, Luis Barbo
Flores-Ortiz, Cesar Mateo
Dueñas-García, Irma Elena
Heres-Pulido, María Eugenia
Castañeda-Partida, Laura
Durán-Díaz, Ángel
Campos-Aguilar, Myriam
Sigrist-Flores, Santiago Cristobal
Piedra-Ibarra, Elías
author_sort Santos-Cruz, Luis Felipe
collection PubMed
description Zearalenone (ZEN) is a non-steroidal mycoestrogen produced by the Fusarium genus. ZEN and its metabolites compete with 17-beta estradiol for cytosolic estrogen receptors, causing reproductive alterations in vertebrates. ZEN has also been associated with toxic and genotoxic effects, as well as an increased risk for endometrial adenocarcinomas or hyperplasia, breast cancer, and oxidative damage, although the underlying mechanisms remain unclear. Previous studies have monitored cellular processes through levels of transcripts associated with Phase I Xenobiotic Metabolism (Cyp6g1 and Cyp6a2), oxidative stress (hsp60 and hsp70), apoptosis (hid, grim, and reaper), and DNA damage genes (Dmp53). In this study, we evaluated the survival and genotoxicity of ZEN, as well as its effects on emergence rate and fecundity in Drosophila melanogaster. Additionally, we determined levels of reactive oxygen species (ROS) using the D. melanogaster flare and Oregon R(R)-flare strains, which differ in levels of Cyp450 gene expression. Our results showed that ZEN toxicity did not increase mortality by more than 30%. We tested three ZEN concentrations (100, 200, and 400 μM) and found that none of the concentrations were genotoxic but were cytotoxic. Taking into account that it has previously been demonstrated that ZEN administration increased hsp60 expression levels and apoptosis gene transcripts in both strains, the data agree with an increase in ROS and development and fecundity alterations. Since Drosophila lacks homologous genes for mammalian estrogen receptors alpha and beta, the effects of this mycotoxin can be explained by a mechanism different from estrogenic activity.
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spelling pubmed-103013862023-06-29 Zearalenone Does Not Show Genotoxic Effects in the Drosophila melanogaster Wing Spot Test, but It Induces Oxidative Imbalance, Development, and Fecundity Alterations Santos-Cruz, Luis Felipe Ponciano-Gómez, Alberto Torres-Gregorio, Juan Tomás Ramírez-Cruz, Bertha Guadalupe Vázquez-Gómez, Gerardo Hernández-Portilla, Luis Barbo Flores-Ortiz, Cesar Mateo Dueñas-García, Irma Elena Heres-Pulido, María Eugenia Castañeda-Partida, Laura Durán-Díaz, Ángel Campos-Aguilar, Myriam Sigrist-Flores, Santiago Cristobal Piedra-Ibarra, Elías Toxins (Basel) Article Zearalenone (ZEN) is a non-steroidal mycoestrogen produced by the Fusarium genus. ZEN and its metabolites compete with 17-beta estradiol for cytosolic estrogen receptors, causing reproductive alterations in vertebrates. ZEN has also been associated with toxic and genotoxic effects, as well as an increased risk for endometrial adenocarcinomas or hyperplasia, breast cancer, and oxidative damage, although the underlying mechanisms remain unclear. Previous studies have monitored cellular processes through levels of transcripts associated with Phase I Xenobiotic Metabolism (Cyp6g1 and Cyp6a2), oxidative stress (hsp60 and hsp70), apoptosis (hid, grim, and reaper), and DNA damage genes (Dmp53). In this study, we evaluated the survival and genotoxicity of ZEN, as well as its effects on emergence rate and fecundity in Drosophila melanogaster. Additionally, we determined levels of reactive oxygen species (ROS) using the D. melanogaster flare and Oregon R(R)-flare strains, which differ in levels of Cyp450 gene expression. Our results showed that ZEN toxicity did not increase mortality by more than 30%. We tested three ZEN concentrations (100, 200, and 400 μM) and found that none of the concentrations were genotoxic but were cytotoxic. Taking into account that it has previously been demonstrated that ZEN administration increased hsp60 expression levels and apoptosis gene transcripts in both strains, the data agree with an increase in ROS and development and fecundity alterations. Since Drosophila lacks homologous genes for mammalian estrogen receptors alpha and beta, the effects of this mycotoxin can be explained by a mechanism different from estrogenic activity. MDPI 2023-05-25 /pmc/articles/PMC10301386/ /pubmed/37368659 http://dx.doi.org/10.3390/toxins15060358 Text en © 2023 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
Santos-Cruz, Luis Felipe
Ponciano-Gómez, Alberto
Torres-Gregorio, Juan Tomás
Ramírez-Cruz, Bertha Guadalupe
Vázquez-Gómez, Gerardo
Hernández-Portilla, Luis Barbo
Flores-Ortiz, Cesar Mateo
Dueñas-García, Irma Elena
Heres-Pulido, María Eugenia
Castañeda-Partida, Laura
Durán-Díaz, Ángel
Campos-Aguilar, Myriam
Sigrist-Flores, Santiago Cristobal
Piedra-Ibarra, Elías
Zearalenone Does Not Show Genotoxic Effects in the Drosophila melanogaster Wing Spot Test, but It Induces Oxidative Imbalance, Development, and Fecundity Alterations
title Zearalenone Does Not Show Genotoxic Effects in the Drosophila melanogaster Wing Spot Test, but It Induces Oxidative Imbalance, Development, and Fecundity Alterations
title_full Zearalenone Does Not Show Genotoxic Effects in the Drosophila melanogaster Wing Spot Test, but It Induces Oxidative Imbalance, Development, and Fecundity Alterations
title_fullStr Zearalenone Does Not Show Genotoxic Effects in the Drosophila melanogaster Wing Spot Test, but It Induces Oxidative Imbalance, Development, and Fecundity Alterations
title_full_unstemmed Zearalenone Does Not Show Genotoxic Effects in the Drosophila melanogaster Wing Spot Test, but It Induces Oxidative Imbalance, Development, and Fecundity Alterations
title_short Zearalenone Does Not Show Genotoxic Effects in the Drosophila melanogaster Wing Spot Test, but It Induces Oxidative Imbalance, Development, and Fecundity Alterations
title_sort zearalenone does not show genotoxic effects in the drosophila melanogaster wing spot test, but it induces oxidative imbalance, development, and fecundity alterations
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10301386/
https://www.ncbi.nlm.nih.gov/pubmed/37368659
http://dx.doi.org/10.3390/toxins15060358
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