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Bucindolol Modulates Cardiac Remodeling by Attenuating Oxidative Stress in H9c2 Cardiac Cells Exposed to Norepinephrine

The increased circulation of norepinephrine, found in the diseased heart as a result of sympathetic nervous system overactivation, is responsible for its cardiotoxic effects including pathological hypertrophy, cell death, and oxidative stress. Bucindolol is a third generation adrenergic blocker, whi...

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Autores principales: de Lima-Seolin, Bruna Gazzi, Nemec-Bakk, Ashley, Forsyth, Heidi, Kirk, Stefanie, da Rosa Araujo, Alex Sander, Schenkel, Paulo Cavalheiro, Belló-Klein, Adriane, Khaper, Neelam
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6652037/
https://www.ncbi.nlm.nih.gov/pubmed/31360296
http://dx.doi.org/10.1155/2019/6325424
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author de Lima-Seolin, Bruna Gazzi
Nemec-Bakk, Ashley
Forsyth, Heidi
Kirk, Stefanie
da Rosa Araujo, Alex Sander
Schenkel, Paulo Cavalheiro
Belló-Klein, Adriane
Khaper, Neelam
author_facet de Lima-Seolin, Bruna Gazzi
Nemec-Bakk, Ashley
Forsyth, Heidi
Kirk, Stefanie
da Rosa Araujo, Alex Sander
Schenkel, Paulo Cavalheiro
Belló-Klein, Adriane
Khaper, Neelam
author_sort de Lima-Seolin, Bruna Gazzi
collection PubMed
description The increased circulation of norepinephrine, found in the diseased heart as a result of sympathetic nervous system overactivation, is responsible for its cardiotoxic effects including pathological hypertrophy, cell death, and oxidative stress. Bucindolol is a third generation adrenergic blocker, which acts on the β1 and β2 receptors, and has additional α1 antagonist activity. Thus, the aim of this study was to investigate the action of bucindolol on oxidative stress, hypertrophy, cell survival, and cell death signaling pathways in H9c2 cardiac cells exposed to norepinephrine. H9c2 cells were incubated with 10 μM norepinephrine for 24 h in the presence or absence of bucindolol (10 μM) treatment for 8 h. Western blot was used to determine the expression of proteins for hypertrophy/survival and death signaling pathways. Flow cytometry was used to assess cell death via caspase-3/7 activity and propidium iodide and reactive oxygen species via measuring the fluorescence of CM-H(2)DCFDA. Norepinephrine exposure resulted in an increase in oxidative stress as well as cell death. This was accompanied by an increased protein expression of LC3B-II/I. The protein kinase B/mammalian target of the rapamycin (Akt/mTOR) pathway which is involved in cardiac remodeling process was activated in response to norepinephrine and was mitigated by bucindolol. In conclusion, bucindolol was able to modulate cardiac remodeling which is mediated by oxidative stress.
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spelling pubmed-66520372019-07-29 Bucindolol Modulates Cardiac Remodeling by Attenuating Oxidative Stress in H9c2 Cardiac Cells Exposed to Norepinephrine de Lima-Seolin, Bruna Gazzi Nemec-Bakk, Ashley Forsyth, Heidi Kirk, Stefanie da Rosa Araujo, Alex Sander Schenkel, Paulo Cavalheiro Belló-Klein, Adriane Khaper, Neelam Oxid Med Cell Longev Research Article The increased circulation of norepinephrine, found in the diseased heart as a result of sympathetic nervous system overactivation, is responsible for its cardiotoxic effects including pathological hypertrophy, cell death, and oxidative stress. Bucindolol is a third generation adrenergic blocker, which acts on the β1 and β2 receptors, and has additional α1 antagonist activity. Thus, the aim of this study was to investigate the action of bucindolol on oxidative stress, hypertrophy, cell survival, and cell death signaling pathways in H9c2 cardiac cells exposed to norepinephrine. H9c2 cells were incubated with 10 μM norepinephrine for 24 h in the presence or absence of bucindolol (10 μM) treatment for 8 h. Western blot was used to determine the expression of proteins for hypertrophy/survival and death signaling pathways. Flow cytometry was used to assess cell death via caspase-3/7 activity and propidium iodide and reactive oxygen species via measuring the fluorescence of CM-H(2)DCFDA. Norepinephrine exposure resulted in an increase in oxidative stress as well as cell death. This was accompanied by an increased protein expression of LC3B-II/I. The protein kinase B/mammalian target of the rapamycin (Akt/mTOR) pathway which is involved in cardiac remodeling process was activated in response to norepinephrine and was mitigated by bucindolol. In conclusion, bucindolol was able to modulate cardiac remodeling which is mediated by oxidative stress. Hindawi 2019-07-10 /pmc/articles/PMC6652037/ /pubmed/31360296 http://dx.doi.org/10.1155/2019/6325424 Text en Copyright © 2019 Bruna Gazzi de Lima-Seolin et al. http://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
de Lima-Seolin, Bruna Gazzi
Nemec-Bakk, Ashley
Forsyth, Heidi
Kirk, Stefanie
da Rosa Araujo, Alex Sander
Schenkel, Paulo Cavalheiro
Belló-Klein, Adriane
Khaper, Neelam
Bucindolol Modulates Cardiac Remodeling by Attenuating Oxidative Stress in H9c2 Cardiac Cells Exposed to Norepinephrine
title Bucindolol Modulates Cardiac Remodeling by Attenuating Oxidative Stress in H9c2 Cardiac Cells Exposed to Norepinephrine
title_full Bucindolol Modulates Cardiac Remodeling by Attenuating Oxidative Stress in H9c2 Cardiac Cells Exposed to Norepinephrine
title_fullStr Bucindolol Modulates Cardiac Remodeling by Attenuating Oxidative Stress in H9c2 Cardiac Cells Exposed to Norepinephrine
title_full_unstemmed Bucindolol Modulates Cardiac Remodeling by Attenuating Oxidative Stress in H9c2 Cardiac Cells Exposed to Norepinephrine
title_short Bucindolol Modulates Cardiac Remodeling by Attenuating Oxidative Stress in H9c2 Cardiac Cells Exposed to Norepinephrine
title_sort bucindolol modulates cardiac remodeling by attenuating oxidative stress in h9c2 cardiac cells exposed to norepinephrine
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6652037/
https://www.ncbi.nlm.nih.gov/pubmed/31360296
http://dx.doi.org/10.1155/2019/6325424
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