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Increased iNOS and Nitrosative Stress in Dopaminergic Neurons of MDMA-Exposed Rats

Several mechanisms underlying 3,4-Methylenedioxy-N-methylamphetamine (MDMA) neurotoxicity have been proposed, including neurochemical alterations and excitotoxicity mediated by reactive oxygen species (ROS), nitric oxide (NO), and reactive nitrogen species (RNS). However, ROS, NO, and RNS sources in...

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Autores principales: Schiavone, Stefania, Neri, Margherita, Maffione, Angela Bruna, Frisoni, Paolo, Morgese, Maria Grazia, Trabace, Luigia, Turillazzi, Emanuela
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6429174/
https://www.ncbi.nlm.nih.gov/pubmed/30871034
http://dx.doi.org/10.3390/ijms20051242
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author Schiavone, Stefania
Neri, Margherita
Maffione, Angela Bruna
Frisoni, Paolo
Morgese, Maria Grazia
Trabace, Luigia
Turillazzi, Emanuela
author_facet Schiavone, Stefania
Neri, Margherita
Maffione, Angela Bruna
Frisoni, Paolo
Morgese, Maria Grazia
Trabace, Luigia
Turillazzi, Emanuela
author_sort Schiavone, Stefania
collection PubMed
description Several mechanisms underlying 3,4-Methylenedioxy-N-methylamphetamine (MDMA) neurotoxicity have been proposed, including neurochemical alterations and excitotoxicity mediated by reactive oxygen species (ROS), nitric oxide (NO), and reactive nitrogen species (RNS). However, ROS, NO, and RNS sources in the brain are not fully known. We aimed to investigate possible alterations in the expression of the ROS producer NOX enzymes (NOX2, NOX1, and NOX4), NO generators (iNOS, eNOS, and nNOS), markers of oxidative (8-hydroxy-2′-deoxyguanosine, 8OHdG), and nitrosative (3-nitrotyrosine, NT) stress, as well as the colocalization between cells positive for the dopamine transporter (DT1) and cells expressing the neuronal nuclei (NeuN) marker, in the frontal cortex of rats receiving saline or MDMA, sacrificed 6 h, 16 h, or 24 h after its administration. MDMA did not affect NOX2, NOX1, and NOX4 immunoreactivity, whereas iNOS expression was enhanced. The number of NT-positive cells was increased in MDMA-exposed animals, whereas no differences were detected in 8OHdG expression among experimental groups. MDMA and NT markers colocalized with DT1 positive cells. DT1 immunostaining was found in NeuN-positive stained cells. Virtually no colocalization was observed with microglia and astrocytes. Moreover, MDMA immunostaining was not found in NOX2-positive cells. Our results suggest that iNOS-derived nitrosative stress, but not NOX enzymes, may have a crucial role in the pathogenesis of MDMA-induced neurotoxicity, highlighting the specificity of different enzymatic systems in the development of neuropathological alterations induced by the abuse of this psychoactive compound.
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spelling pubmed-64291742019-04-10 Increased iNOS and Nitrosative Stress in Dopaminergic Neurons of MDMA-Exposed Rats Schiavone, Stefania Neri, Margherita Maffione, Angela Bruna Frisoni, Paolo Morgese, Maria Grazia Trabace, Luigia Turillazzi, Emanuela Int J Mol Sci Article Several mechanisms underlying 3,4-Methylenedioxy-N-methylamphetamine (MDMA) neurotoxicity have been proposed, including neurochemical alterations and excitotoxicity mediated by reactive oxygen species (ROS), nitric oxide (NO), and reactive nitrogen species (RNS). However, ROS, NO, and RNS sources in the brain are not fully known. We aimed to investigate possible alterations in the expression of the ROS producer NOX enzymes (NOX2, NOX1, and NOX4), NO generators (iNOS, eNOS, and nNOS), markers of oxidative (8-hydroxy-2′-deoxyguanosine, 8OHdG), and nitrosative (3-nitrotyrosine, NT) stress, as well as the colocalization between cells positive for the dopamine transporter (DT1) and cells expressing the neuronal nuclei (NeuN) marker, in the frontal cortex of rats receiving saline or MDMA, sacrificed 6 h, 16 h, or 24 h after its administration. MDMA did not affect NOX2, NOX1, and NOX4 immunoreactivity, whereas iNOS expression was enhanced. The number of NT-positive cells was increased in MDMA-exposed animals, whereas no differences were detected in 8OHdG expression among experimental groups. MDMA and NT markers colocalized with DT1 positive cells. DT1 immunostaining was found in NeuN-positive stained cells. Virtually no colocalization was observed with microglia and astrocytes. Moreover, MDMA immunostaining was not found in NOX2-positive cells. Our results suggest that iNOS-derived nitrosative stress, but not NOX enzymes, may have a crucial role in the pathogenesis of MDMA-induced neurotoxicity, highlighting the specificity of different enzymatic systems in the development of neuropathological alterations induced by the abuse of this psychoactive compound. MDPI 2019-03-12 /pmc/articles/PMC6429174/ /pubmed/30871034 http://dx.doi.org/10.3390/ijms20051242 Text en © 2019 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
Schiavone, Stefania
Neri, Margherita
Maffione, Angela Bruna
Frisoni, Paolo
Morgese, Maria Grazia
Trabace, Luigia
Turillazzi, Emanuela
Increased iNOS and Nitrosative Stress in Dopaminergic Neurons of MDMA-Exposed Rats
title Increased iNOS and Nitrosative Stress in Dopaminergic Neurons of MDMA-Exposed Rats
title_full Increased iNOS and Nitrosative Stress in Dopaminergic Neurons of MDMA-Exposed Rats
title_fullStr Increased iNOS and Nitrosative Stress in Dopaminergic Neurons of MDMA-Exposed Rats
title_full_unstemmed Increased iNOS and Nitrosative Stress in Dopaminergic Neurons of MDMA-Exposed Rats
title_short Increased iNOS and Nitrosative Stress in Dopaminergic Neurons of MDMA-Exposed Rats
title_sort increased inos and nitrosative stress in dopaminergic neurons of mdma-exposed rats
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6429174/
https://www.ncbi.nlm.nih.gov/pubmed/30871034
http://dx.doi.org/10.3390/ijms20051242
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