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Oxidative Stress: A Unifying Paradigm in Hypertension

The etiology of hypertension involves complex interactions among genetic, environmental, and pathophysiologic factors that influence many regulatory systems. Hypertension is characteristically associated with vascular dysfunction, cardiovascular remodelling, renal dysfunction, and stimulation of the...

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Autores principales: Touyz, Rhian M., Rios, Francisco J., Alves-Lopes, Rhéure, Neves, Karla B., Camargo, Livia L., Montezano, Augusto C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Pulsus Group 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7225748/
https://www.ncbi.nlm.nih.gov/pubmed/32389339
http://dx.doi.org/10.1016/j.cjca.2020.02.081
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author Touyz, Rhian M.
Rios, Francisco J.
Alves-Lopes, Rhéure
Neves, Karla B.
Camargo, Livia L.
Montezano, Augusto C.
author_facet Touyz, Rhian M.
Rios, Francisco J.
Alves-Lopes, Rhéure
Neves, Karla B.
Camargo, Livia L.
Montezano, Augusto C.
author_sort Touyz, Rhian M.
collection PubMed
description The etiology of hypertension involves complex interactions among genetic, environmental, and pathophysiologic factors that influence many regulatory systems. Hypertension is characteristically associated with vascular dysfunction, cardiovascular remodelling, renal dysfunction, and stimulation of the sympathetic nervous system. Emerging evidence indicates that the immune system is also important and that activated immune cells migrate and accumulate in tissues promoting inflammation, fibrosis, and target-organ damage. Common to these processes is oxidative stress, defined as an imbalance between oxidants and antioxidants in favour of the oxidants that leads to a disruption of oxidation-reduction (redox) signalling and control and molecular damage. Physiologically, reactive oxygen species (ROS) act as signalling molecules and influence cell function through highly regulated redox-sensitive signal transduction. In hypertension, oxidative stress promotes posttranslational modification (oxidation and phosphorylation) of proteins and aberrant signalling with consequent cell and tissue damage. Many enzymatic systems generate ROS, but NADPH oxidases (Nox) are the major sources in cells of the heart, vessels, kidneys, and immune system. Expression and activity of Nox are increased in hypertension and are the major systems responsible for oxidative stress in cardiovascular disease. Here we provide a unifying concept where oxidative stress is a common mediator underlying pathophysiologic processes in hypertension. We focus on some novel concepts whereby ROS influence vascular function, aldosterone/mineralocorticoid actions, and immunoinflammation, all important processes contributing to the development of hypertension.
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spelling pubmed-72257482020-05-18 Oxidative Stress: A Unifying Paradigm in Hypertension Touyz, Rhian M. Rios, Francisco J. Alves-Lopes, Rhéure Neves, Karla B. Camargo, Livia L. Montezano, Augusto C. Can J Cardiol Article The etiology of hypertension involves complex interactions among genetic, environmental, and pathophysiologic factors that influence many regulatory systems. Hypertension is characteristically associated with vascular dysfunction, cardiovascular remodelling, renal dysfunction, and stimulation of the sympathetic nervous system. Emerging evidence indicates that the immune system is also important and that activated immune cells migrate and accumulate in tissues promoting inflammation, fibrosis, and target-organ damage. Common to these processes is oxidative stress, defined as an imbalance between oxidants and antioxidants in favour of the oxidants that leads to a disruption of oxidation-reduction (redox) signalling and control and molecular damage. Physiologically, reactive oxygen species (ROS) act as signalling molecules and influence cell function through highly regulated redox-sensitive signal transduction. In hypertension, oxidative stress promotes posttranslational modification (oxidation and phosphorylation) of proteins and aberrant signalling with consequent cell and tissue damage. Many enzymatic systems generate ROS, but NADPH oxidases (Nox) are the major sources in cells of the heart, vessels, kidneys, and immune system. Expression and activity of Nox are increased in hypertension and are the major systems responsible for oxidative stress in cardiovascular disease. Here we provide a unifying concept where oxidative stress is a common mediator underlying pathophysiologic processes in hypertension. We focus on some novel concepts whereby ROS influence vascular function, aldosterone/mineralocorticoid actions, and immunoinflammation, all important processes contributing to the development of hypertension. Pulsus Group 2020-05 /pmc/articles/PMC7225748/ /pubmed/32389339 http://dx.doi.org/10.1016/j.cjca.2020.02.081 Text en © 2020 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Touyz, Rhian M.
Rios, Francisco J.
Alves-Lopes, Rhéure
Neves, Karla B.
Camargo, Livia L.
Montezano, Augusto C.
Oxidative Stress: A Unifying Paradigm in Hypertension
title Oxidative Stress: A Unifying Paradigm in Hypertension
title_full Oxidative Stress: A Unifying Paradigm in Hypertension
title_fullStr Oxidative Stress: A Unifying Paradigm in Hypertension
title_full_unstemmed Oxidative Stress: A Unifying Paradigm in Hypertension
title_short Oxidative Stress: A Unifying Paradigm in Hypertension
title_sort oxidative stress: a unifying paradigm in hypertension
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7225748/
https://www.ncbi.nlm.nih.gov/pubmed/32389339
http://dx.doi.org/10.1016/j.cjca.2020.02.081
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