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Melatonin Protects Band 3 Protein in Human Erythrocytes against H(2)O(2)-Induced Oxidative Stress

The beneficial effect of Melatonin (Mel), recognized as an anti-inflammatory and antioxidant compound, has been already proven to prevent oxidative stress-induced damage associated to lipid peroxidation. As previous studies modeled the impact of oxidative stress on Band 3 protein, an anion exchanger...

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Autores principales: Morabito, Rossana, Remigante, Alessia, Marino, Angela
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6695615/
https://www.ncbi.nlm.nih.gov/pubmed/31357737
http://dx.doi.org/10.3390/molecules24152741
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author Morabito, Rossana
Remigante, Alessia
Marino, Angela
author_facet Morabito, Rossana
Remigante, Alessia
Marino, Angela
author_sort Morabito, Rossana
collection PubMed
description The beneficial effect of Melatonin (Mel), recognized as an anti-inflammatory and antioxidant compound, has been already proven to prevent oxidative stress-induced damage associated to lipid peroxidation. As previous studies modeled the impact of oxidative stress on Band 3 protein, an anion exchanger that is essential to erythrocytes homeostasis, by applying H(2)O(2) at not hemolytic concentrations and not producing lipid peroxidation, the aim of the present work was to evaluate the possible antioxidant effect of pharmacological doses of Mel on Band 3 protein anion exchange capability. The experiments have been performed on human erythrocytes exposed to 300 μM H(2)O(2)-induced oxidative stress. To this end, oxidative damage has been verified by monitoring the rate constant for SO(4)(=) uptake through Band 3 protein. Expression levels of this protein Mel doses lower than 100 µM have also been excluded due to lipid peroxidation, Band 3 protein expression levels, and cell shape alterations, confirming a pro-oxidant action of Mel at certain doses. On the other hand, 100 µM Mel, not provoking lipid peroxidation, restored the rate constant for SO(4)(=) uptake, Band 3 protein expression levels, and H(2)O(2)-induced cell shape alterations. Such an effect was confirmed by abolishing the endogenous erythrocytes antioxidant system. Therefore, the present findings show the antioxidant power of Mel at pharmacological concentrations in an in vitro model of oxidative stress not associated to lipid peroxidation, thereby confirming Band 3 protein anion exchange capability measurement as a suitable model to prove the beneficial effect of Mel and support the use of this compound in oxidative stress-related diseases affecting Band 3 protein.
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spelling pubmed-66956152019-09-05 Melatonin Protects Band 3 Protein in Human Erythrocytes against H(2)O(2)-Induced Oxidative Stress Morabito, Rossana Remigante, Alessia Marino, Angela Molecules Article The beneficial effect of Melatonin (Mel), recognized as an anti-inflammatory and antioxidant compound, has been already proven to prevent oxidative stress-induced damage associated to lipid peroxidation. As previous studies modeled the impact of oxidative stress on Band 3 protein, an anion exchanger that is essential to erythrocytes homeostasis, by applying H(2)O(2) at not hemolytic concentrations and not producing lipid peroxidation, the aim of the present work was to evaluate the possible antioxidant effect of pharmacological doses of Mel on Band 3 protein anion exchange capability. The experiments have been performed on human erythrocytes exposed to 300 μM H(2)O(2)-induced oxidative stress. To this end, oxidative damage has been verified by monitoring the rate constant for SO(4)(=) uptake through Band 3 protein. Expression levels of this protein Mel doses lower than 100 µM have also been excluded due to lipid peroxidation, Band 3 protein expression levels, and cell shape alterations, confirming a pro-oxidant action of Mel at certain doses. On the other hand, 100 µM Mel, not provoking lipid peroxidation, restored the rate constant for SO(4)(=) uptake, Band 3 protein expression levels, and H(2)O(2)-induced cell shape alterations. Such an effect was confirmed by abolishing the endogenous erythrocytes antioxidant system. Therefore, the present findings show the antioxidant power of Mel at pharmacological concentrations in an in vitro model of oxidative stress not associated to lipid peroxidation, thereby confirming Band 3 protein anion exchange capability measurement as a suitable model to prove the beneficial effect of Mel and support the use of this compound in oxidative stress-related diseases affecting Band 3 protein. MDPI 2019-07-28 /pmc/articles/PMC6695615/ /pubmed/31357737 http://dx.doi.org/10.3390/molecules24152741 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
Morabito, Rossana
Remigante, Alessia
Marino, Angela
Melatonin Protects Band 3 Protein in Human Erythrocytes against H(2)O(2)-Induced Oxidative Stress
title Melatonin Protects Band 3 Protein in Human Erythrocytes against H(2)O(2)-Induced Oxidative Stress
title_full Melatonin Protects Band 3 Protein in Human Erythrocytes against H(2)O(2)-Induced Oxidative Stress
title_fullStr Melatonin Protects Band 3 Protein in Human Erythrocytes against H(2)O(2)-Induced Oxidative Stress
title_full_unstemmed Melatonin Protects Band 3 Protein in Human Erythrocytes against H(2)O(2)-Induced Oxidative Stress
title_short Melatonin Protects Band 3 Protein in Human Erythrocytes against H(2)O(2)-Induced Oxidative Stress
title_sort melatonin protects band 3 protein in human erythrocytes against h(2)o(2)-induced oxidative stress
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6695615/
https://www.ncbi.nlm.nih.gov/pubmed/31357737
http://dx.doi.org/10.3390/molecules24152741
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