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Beta3-Adrenergic Receptor Activation Alleviates Cardiac Dysfunction in Cardiac Hypertrophy by Regulating Oxidative Stress

BACKGROUND: Excessive myocardial oxidative stress could lead to the congestive heart failure. NADPH oxidase is involved in the pathological process of left ventricular (LV) remodeling and dysfunction. β3-Adrenergic receptor (AR) could regulate cardiac dysfunction proved by recent researches. The mol...

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Autores principales: Zhang, Mingming, Xu, Yuerong, Chen, Jianghong, Qin, Chaoshi, Liu, Jing, Guo, Dong, Wang, Rui, Hu, Jianqiang, Zou, Qing, Yang, Jingxiao, Wang, Zikuan, Niu, Xiaolin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8505079/
https://www.ncbi.nlm.nih.gov/pubmed/34646422
http://dx.doi.org/10.1155/2021/3417242
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author Zhang, Mingming
Xu, Yuerong
Chen, Jianghong
Qin, Chaoshi
Liu, Jing
Guo, Dong
Wang, Rui
Hu, Jianqiang
Zou, Qing
Yang, Jingxiao
Wang, Zikuan
Niu, Xiaolin
author_facet Zhang, Mingming
Xu, Yuerong
Chen, Jianghong
Qin, Chaoshi
Liu, Jing
Guo, Dong
Wang, Rui
Hu, Jianqiang
Zou, Qing
Yang, Jingxiao
Wang, Zikuan
Niu, Xiaolin
author_sort Zhang, Mingming
collection PubMed
description BACKGROUND: Excessive myocardial oxidative stress could lead to the congestive heart failure. NADPH oxidase is involved in the pathological process of left ventricular (LV) remodeling and dysfunction. β3-Adrenergic receptor (AR) could regulate cardiac dysfunction proved by recent researches. The molecular mechanism of β3-AR regulating oxidative stress, especially NADPH oxidase, remains to be determined. METHODS: Cardiac hypertrophy was constructed by the transverse aortic constriction (TAC) model. ROS and NADPH oxidase subunits expression were assessed after β3-AR agonist (BRL) or inhibitor (SR) administration in cardiac hypertrophy. Moreover, the cardiac function, fibrosis, heart size, oxidative stress, and cardiomyocytes apoptosis were also detected. RESULTS: β3-AR activation significantly alleviated cardiac hypertrophy and remodeling in pressure-overloaded mice. β3-AR stimulation also improved heart function and reduced cardiomyocytes apoptosis, oxidative stress, and fibrosis. Meanwhile, β3-AR stimulation inhibited superoxide anion production and decreased NADPH oxidase activity. Furthermore, BRL treatment increased the neuronal NOS (nNOS) expression in cardiac hypertrophy. CONCLUSION: β3-AR stimulation alleviated cardiac dysfunction and reduced cardiomyocytes apoptosis, oxidative stress, and fibrosis by inhibiting NADPH oxidases. In addition, the protective effect of β3-AR is largely attributed to nNOS activation in cardiac hypertrophy.
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spelling pubmed-85050792021-10-12 Beta3-Adrenergic Receptor Activation Alleviates Cardiac Dysfunction in Cardiac Hypertrophy by Regulating Oxidative Stress Zhang, Mingming Xu, Yuerong Chen, Jianghong Qin, Chaoshi Liu, Jing Guo, Dong Wang, Rui Hu, Jianqiang Zou, Qing Yang, Jingxiao Wang, Zikuan Niu, Xiaolin Oxid Med Cell Longev Research Article BACKGROUND: Excessive myocardial oxidative stress could lead to the congestive heart failure. NADPH oxidase is involved in the pathological process of left ventricular (LV) remodeling and dysfunction. β3-Adrenergic receptor (AR) could regulate cardiac dysfunction proved by recent researches. The molecular mechanism of β3-AR regulating oxidative stress, especially NADPH oxidase, remains to be determined. METHODS: Cardiac hypertrophy was constructed by the transverse aortic constriction (TAC) model. ROS and NADPH oxidase subunits expression were assessed after β3-AR agonist (BRL) or inhibitor (SR) administration in cardiac hypertrophy. Moreover, the cardiac function, fibrosis, heart size, oxidative stress, and cardiomyocytes apoptosis were also detected. RESULTS: β3-AR activation significantly alleviated cardiac hypertrophy and remodeling in pressure-overloaded mice. β3-AR stimulation also improved heart function and reduced cardiomyocytes apoptosis, oxidative stress, and fibrosis. Meanwhile, β3-AR stimulation inhibited superoxide anion production and decreased NADPH oxidase activity. Furthermore, BRL treatment increased the neuronal NOS (nNOS) expression in cardiac hypertrophy. CONCLUSION: β3-AR stimulation alleviated cardiac dysfunction and reduced cardiomyocytes apoptosis, oxidative stress, and fibrosis by inhibiting NADPH oxidases. In addition, the protective effect of β3-AR is largely attributed to nNOS activation in cardiac hypertrophy. Hindawi 2021-10-04 /pmc/articles/PMC8505079/ /pubmed/34646422 http://dx.doi.org/10.1155/2021/3417242 Text en Copyright © 2021 Mingming Zhang 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
Zhang, Mingming
Xu, Yuerong
Chen, Jianghong
Qin, Chaoshi
Liu, Jing
Guo, Dong
Wang, Rui
Hu, Jianqiang
Zou, Qing
Yang, Jingxiao
Wang, Zikuan
Niu, Xiaolin
Beta3-Adrenergic Receptor Activation Alleviates Cardiac Dysfunction in Cardiac Hypertrophy by Regulating Oxidative Stress
title Beta3-Adrenergic Receptor Activation Alleviates Cardiac Dysfunction in Cardiac Hypertrophy by Regulating Oxidative Stress
title_full Beta3-Adrenergic Receptor Activation Alleviates Cardiac Dysfunction in Cardiac Hypertrophy by Regulating Oxidative Stress
title_fullStr Beta3-Adrenergic Receptor Activation Alleviates Cardiac Dysfunction in Cardiac Hypertrophy by Regulating Oxidative Stress
title_full_unstemmed Beta3-Adrenergic Receptor Activation Alleviates Cardiac Dysfunction in Cardiac Hypertrophy by Regulating Oxidative Stress
title_short Beta3-Adrenergic Receptor Activation Alleviates Cardiac Dysfunction in Cardiac Hypertrophy by Regulating Oxidative Stress
title_sort beta3-adrenergic receptor activation alleviates cardiac dysfunction in cardiac hypertrophy by regulating oxidative stress
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8505079/
https://www.ncbi.nlm.nih.gov/pubmed/34646422
http://dx.doi.org/10.1155/2021/3417242
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