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Radiation-Induced Dual Oxidase Upregulation in Rat Heart Tissues: Protective Effect of Melatonin

Background: Radiation-induced heart injury can lead to increased risk of heart failure, attack, and ischemia. Some studies proposed IL-4 and IL-13 as two important cytokines that are involved in late effects of ionizing radiation. On the other hand, these cytokines may, through upregulation of Duox1...

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Autores principales: Farhood, Bagher, Aliasgharzadeh, Akbar, Amini, Peyman, Saffar, Hana, Motevaseli, Elahe, Rezapoor, Saeed, Nouruzi, Farzad, Shabeeb, Dheyauldeen, Eleojo Musa, Ahmed, Ashabi, Ghorbangol, Mohseni, Mehran, Moradi, Habiballah, Najafi, Masoud
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6680718/
https://www.ncbi.nlm.nih.gov/pubmed/31252673
http://dx.doi.org/10.3390/medicina55070317
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author Farhood, Bagher
Aliasgharzadeh, Akbar
Amini, Peyman
Saffar, Hana
Motevaseli, Elahe
Rezapoor, Saeed
Nouruzi, Farzad
Shabeeb, Dheyauldeen
Eleojo Musa, Ahmed
Ashabi, Ghorbangol
Mohseni, Mehran
Moradi, Habiballah
Najafi, Masoud
author_facet Farhood, Bagher
Aliasgharzadeh, Akbar
Amini, Peyman
Saffar, Hana
Motevaseli, Elahe
Rezapoor, Saeed
Nouruzi, Farzad
Shabeeb, Dheyauldeen
Eleojo Musa, Ahmed
Ashabi, Ghorbangol
Mohseni, Mehran
Moradi, Habiballah
Najafi, Masoud
author_sort Farhood, Bagher
collection PubMed
description Background: Radiation-induced heart injury can lead to increased risk of heart failure, attack, and ischemia. Some studies proposed IL-4 and IL-13 as two important cytokines that are involved in late effects of ionizing radiation. On the other hand, these cytokines may, through upregulation of Duox1 and Duox2, induce chronic oxidative stress, inflammation, and fibrosis. In this study, we evaluated the upregulation of Duox1 and Duox2 pathways in hearts following chest irradiation in rats and then detected possible attenuation of them by melatonin. Materials and Methods: Twenty male Wistar rats were divided into four groups: (1) control; (2) melatonin treated (100 mg/kg); (3) radiation (15 Gy gamma rays); (4) melatonin treated before irradiation. All rats were sacrificed after 10 weeks and their heart tissues collected for real-time PCR (RT-PCR), ELISA detection of IL-4 and IL-13, as well as histopathological evaluation of macrophages and lymphocytes infiltration. Results: Results showed an upregulation of IL-4, IL4ra1, Duox1, and Duox2. The biggest changes were for IL4ra1 and Duox1. Treatment with melatonin before irradiation could attenuate the upregulation of all genes. Melatonin also caused a reduction in IL-4 as well as reverse infiltration of inflammatory cells. Conclusion: Duox1 and Duox2 may be involved in the late effects of radiation-induced heart injury. Also, via attenuation of these genes, melatonin can offer protection against the toxic effects of radiation on the heart.
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spelling pubmed-66807182019-08-09 Radiation-Induced Dual Oxidase Upregulation in Rat Heart Tissues: Protective Effect of Melatonin Farhood, Bagher Aliasgharzadeh, Akbar Amini, Peyman Saffar, Hana Motevaseli, Elahe Rezapoor, Saeed Nouruzi, Farzad Shabeeb, Dheyauldeen Eleojo Musa, Ahmed Ashabi, Ghorbangol Mohseni, Mehran Moradi, Habiballah Najafi, Masoud Medicina (Kaunas) Article Background: Radiation-induced heart injury can lead to increased risk of heart failure, attack, and ischemia. Some studies proposed IL-4 and IL-13 as two important cytokines that are involved in late effects of ionizing radiation. On the other hand, these cytokines may, through upregulation of Duox1 and Duox2, induce chronic oxidative stress, inflammation, and fibrosis. In this study, we evaluated the upregulation of Duox1 and Duox2 pathways in hearts following chest irradiation in rats and then detected possible attenuation of them by melatonin. Materials and Methods: Twenty male Wistar rats were divided into four groups: (1) control; (2) melatonin treated (100 mg/kg); (3) radiation (15 Gy gamma rays); (4) melatonin treated before irradiation. All rats were sacrificed after 10 weeks and their heart tissues collected for real-time PCR (RT-PCR), ELISA detection of IL-4 and IL-13, as well as histopathological evaluation of macrophages and lymphocytes infiltration. Results: Results showed an upregulation of IL-4, IL4ra1, Duox1, and Duox2. The biggest changes were for IL4ra1 and Duox1. Treatment with melatonin before irradiation could attenuate the upregulation of all genes. Melatonin also caused a reduction in IL-4 as well as reverse infiltration of inflammatory cells. Conclusion: Duox1 and Duox2 may be involved in the late effects of radiation-induced heart injury. Also, via attenuation of these genes, melatonin can offer protection against the toxic effects of radiation on the heart. MDPI 2019-06-27 /pmc/articles/PMC6680718/ /pubmed/31252673 http://dx.doi.org/10.3390/medicina55070317 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
Farhood, Bagher
Aliasgharzadeh, Akbar
Amini, Peyman
Saffar, Hana
Motevaseli, Elahe
Rezapoor, Saeed
Nouruzi, Farzad
Shabeeb, Dheyauldeen
Eleojo Musa, Ahmed
Ashabi, Ghorbangol
Mohseni, Mehran
Moradi, Habiballah
Najafi, Masoud
Radiation-Induced Dual Oxidase Upregulation in Rat Heart Tissues: Protective Effect of Melatonin
title Radiation-Induced Dual Oxidase Upregulation in Rat Heart Tissues: Protective Effect of Melatonin
title_full Radiation-Induced Dual Oxidase Upregulation in Rat Heart Tissues: Protective Effect of Melatonin
title_fullStr Radiation-Induced Dual Oxidase Upregulation in Rat Heart Tissues: Protective Effect of Melatonin
title_full_unstemmed Radiation-Induced Dual Oxidase Upregulation in Rat Heart Tissues: Protective Effect of Melatonin
title_short Radiation-Induced Dual Oxidase Upregulation in Rat Heart Tissues: Protective Effect of Melatonin
title_sort radiation-induced dual oxidase upregulation in rat heart tissues: protective effect of melatonin
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6680718/
https://www.ncbi.nlm.nih.gov/pubmed/31252673
http://dx.doi.org/10.3390/medicina55070317
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