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H9c2 Cardiomyocytes under Hypoxic Stress: Biological Effects Mediated by Sentinel Downstream Targets

The association between diabetes and cardiovascular diseases is well known. Related diabetes macro- and microangiopathies frequently induce hypoxia and consequently energy failure to satisfy the jeopardized myocardium basal needs. Additionally, it is widely accepted that diabetes impairs endothelial...

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Autores principales: Boccellino, Mariarosaria, Galasso, Giovanni, Ambrosio, Pasqualina, Stiuso, Paola, Lama, Stefania, Di Zazzo, Erika, Schiavon, Sonia, Vecchio, Daniele, D'ambrosio, Luca, Quagliuolo, Lucio, Feola, Antonia, Frati, Giacomo, Di Domenico, Marina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8497098/
https://www.ncbi.nlm.nih.gov/pubmed/34630851
http://dx.doi.org/10.1155/2021/6874146
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author Boccellino, Mariarosaria
Galasso, Giovanni
Ambrosio, Pasqualina
Stiuso, Paola
Lama, Stefania
Di Zazzo, Erika
Schiavon, Sonia
Vecchio, Daniele
D'ambrosio, Luca
Quagliuolo, Lucio
Feola, Antonia
Frati, Giacomo
Di Domenico, Marina
author_facet Boccellino, Mariarosaria
Galasso, Giovanni
Ambrosio, Pasqualina
Stiuso, Paola
Lama, Stefania
Di Zazzo, Erika
Schiavon, Sonia
Vecchio, Daniele
D'ambrosio, Luca
Quagliuolo, Lucio
Feola, Antonia
Frati, Giacomo
Di Domenico, Marina
author_sort Boccellino, Mariarosaria
collection PubMed
description The association between diabetes and cardiovascular diseases is well known. Related diabetes macro- and microangiopathies frequently induce hypoxia and consequently energy failure to satisfy the jeopardized myocardium basal needs. Additionally, it is widely accepted that diabetes impairs endothelial nitric oxide synthase (eNOS) activity, resulting in diminished nitric oxide (NO) bioavailability and consequent endothelial cell dysfunction. In this study, we analyzed the embryonic heart-derived H9c2 cell response to hypoxic stress after administration of a high glucose concentration to reproduce a condition often observed in diabetes. We observed that 24 h hypoxia exposure of H9c2 cells reduced cell viability compared to cells grown in normoxic conditions. Cytotoxicity and early apoptosis were increased after exposure to high glucose administration. In addition, hypoxia induced a RhoA upregulation and a Bcl-2 downregulation and lowered the ERK activation observed in normoxia at both glucose concentrations. Furthermore, a significant cell proliferation rate increases after the 1400 W iNOS inhibitor administration was observed. Again, hypoxia increased the expression level of myogenin, a marker of skeletal muscle cell differentiation. The cardiomyocyte gene expression profiles and morphology changes observed in response to pathological stimuli, as hypoxia, could lead to improper ventricular remodeling responsible for heart failure. Therefore, understanding cell signaling events that regulate cardiac response to hypoxia could be useful for the discovery of novel therapeutic approaches able to prevent heart diseases.
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spelling pubmed-84970982021-10-08 H9c2 Cardiomyocytes under Hypoxic Stress: Biological Effects Mediated by Sentinel Downstream Targets Boccellino, Mariarosaria Galasso, Giovanni Ambrosio, Pasqualina Stiuso, Paola Lama, Stefania Di Zazzo, Erika Schiavon, Sonia Vecchio, Daniele D'ambrosio, Luca Quagliuolo, Lucio Feola, Antonia Frati, Giacomo Di Domenico, Marina Oxid Med Cell Longev Research Article The association between diabetes and cardiovascular diseases is well known. Related diabetes macro- and microangiopathies frequently induce hypoxia and consequently energy failure to satisfy the jeopardized myocardium basal needs. Additionally, it is widely accepted that diabetes impairs endothelial nitric oxide synthase (eNOS) activity, resulting in diminished nitric oxide (NO) bioavailability and consequent endothelial cell dysfunction. In this study, we analyzed the embryonic heart-derived H9c2 cell response to hypoxic stress after administration of a high glucose concentration to reproduce a condition often observed in diabetes. We observed that 24 h hypoxia exposure of H9c2 cells reduced cell viability compared to cells grown in normoxic conditions. Cytotoxicity and early apoptosis were increased after exposure to high glucose administration. In addition, hypoxia induced a RhoA upregulation and a Bcl-2 downregulation and lowered the ERK activation observed in normoxia at both glucose concentrations. Furthermore, a significant cell proliferation rate increases after the 1400 W iNOS inhibitor administration was observed. Again, hypoxia increased the expression level of myogenin, a marker of skeletal muscle cell differentiation. The cardiomyocyte gene expression profiles and morphology changes observed in response to pathological stimuli, as hypoxia, could lead to improper ventricular remodeling responsible for heart failure. Therefore, understanding cell signaling events that regulate cardiac response to hypoxia could be useful for the discovery of novel therapeutic approaches able to prevent heart diseases. Hindawi 2021-09-30 /pmc/articles/PMC8497098/ /pubmed/34630851 http://dx.doi.org/10.1155/2021/6874146 Text en Copyright © 2021 Mariarosaria Boccellino et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Boccellino, Mariarosaria
Galasso, Giovanni
Ambrosio, Pasqualina
Stiuso, Paola
Lama, Stefania
Di Zazzo, Erika
Schiavon, Sonia
Vecchio, Daniele
D'ambrosio, Luca
Quagliuolo, Lucio
Feola, Antonia
Frati, Giacomo
Di Domenico, Marina
H9c2 Cardiomyocytes under Hypoxic Stress: Biological Effects Mediated by Sentinel Downstream Targets
title H9c2 Cardiomyocytes under Hypoxic Stress: Biological Effects Mediated by Sentinel Downstream Targets
title_full H9c2 Cardiomyocytes under Hypoxic Stress: Biological Effects Mediated by Sentinel Downstream Targets
title_fullStr H9c2 Cardiomyocytes under Hypoxic Stress: Biological Effects Mediated by Sentinel Downstream Targets
title_full_unstemmed H9c2 Cardiomyocytes under Hypoxic Stress: Biological Effects Mediated by Sentinel Downstream Targets
title_short H9c2 Cardiomyocytes under Hypoxic Stress: Biological Effects Mediated by Sentinel Downstream Targets
title_sort h9c2 cardiomyocytes under hypoxic stress: biological effects mediated by sentinel downstream targets
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8497098/
https://www.ncbi.nlm.nih.gov/pubmed/34630851
http://dx.doi.org/10.1155/2021/6874146
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