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The Impact of Environmental Factors in Influencing Epigenetics Related to Oxidative States in the Cardiovascular System

Oxidative states exert a significant influence on a wide range of biological and molecular processes and functions. When their balance is shifted towards enhanced amounts of free radicals, pathological phenomena can occur, as the generation of reactive oxygen species (ROS) in tissue microenvironment...

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Autores principales: Angelini, Francesco, Pagano, Francesca, Bordin, Antonella, Milan, Marika, Chimenti, Isotta, Peruzzi, Mariangela, Valenti, Valentina, Marullo, Antonino, Schirone, Leonardo, Palmerio, Silvia, Sciarretta, Sebastiano, Murdoch, Colin E., Frati, Giacomo, De Falco, Elena
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5457758/
https://www.ncbi.nlm.nih.gov/pubmed/28607629
http://dx.doi.org/10.1155/2017/2712751
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author Angelini, Francesco
Pagano, Francesca
Bordin, Antonella
Milan, Marika
Chimenti, Isotta
Peruzzi, Mariangela
Valenti, Valentina
Marullo, Antonino
Schirone, Leonardo
Palmerio, Silvia
Sciarretta, Sebastiano
Murdoch, Colin E.
Frati, Giacomo
De Falco, Elena
author_facet Angelini, Francesco
Pagano, Francesca
Bordin, Antonella
Milan, Marika
Chimenti, Isotta
Peruzzi, Mariangela
Valenti, Valentina
Marullo, Antonino
Schirone, Leonardo
Palmerio, Silvia
Sciarretta, Sebastiano
Murdoch, Colin E.
Frati, Giacomo
De Falco, Elena
author_sort Angelini, Francesco
collection PubMed
description Oxidative states exert a significant influence on a wide range of biological and molecular processes and functions. When their balance is shifted towards enhanced amounts of free radicals, pathological phenomena can occur, as the generation of reactive oxygen species (ROS) in tissue microenvironment or in the systemic circulation can be detrimental. Epidemic chronic diseases of western societies, such as cardiovascular disease, obesity, and diabetes correlate with the imbalance of redox homeostasis. Current advances in our understanding of epigenetics have revealed a parallel scenario showing the influence of oxidative stress as a major regulator of epigenetic gene regulation via modification of DNA methylation, histones, and microRNAs. This has provided both the biological link and a potential molecular explanation between oxidative stress and cardiovascular/metabolic phenomena. Accordingly, in this review, we will provide current insights on the physiological and pathological impact of changes in oxidative states on cardiovascular disorders, by specifically focusing on the influence of epigenetic regulation. A special emphasis will highlight the effect on epigenetic regulation of human's current life habits, external and environmental factors, including food intake, tobacco, air pollution, and antioxidant-based approaches. Additionally, the strategy to quantify oxidative states in humans in order to determine which biological marker could best match a subject's profile will be discussed.
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spelling pubmed-54577582017-06-12 The Impact of Environmental Factors in Influencing Epigenetics Related to Oxidative States in the Cardiovascular System Angelini, Francesco Pagano, Francesca Bordin, Antonella Milan, Marika Chimenti, Isotta Peruzzi, Mariangela Valenti, Valentina Marullo, Antonino Schirone, Leonardo Palmerio, Silvia Sciarretta, Sebastiano Murdoch, Colin E. Frati, Giacomo De Falco, Elena Oxid Med Cell Longev Review Article Oxidative states exert a significant influence on a wide range of biological and molecular processes and functions. When their balance is shifted towards enhanced amounts of free radicals, pathological phenomena can occur, as the generation of reactive oxygen species (ROS) in tissue microenvironment or in the systemic circulation can be detrimental. Epidemic chronic diseases of western societies, such as cardiovascular disease, obesity, and diabetes correlate with the imbalance of redox homeostasis. Current advances in our understanding of epigenetics have revealed a parallel scenario showing the influence of oxidative stress as a major regulator of epigenetic gene regulation via modification of DNA methylation, histones, and microRNAs. This has provided both the biological link and a potential molecular explanation between oxidative stress and cardiovascular/metabolic phenomena. Accordingly, in this review, we will provide current insights on the physiological and pathological impact of changes in oxidative states on cardiovascular disorders, by specifically focusing on the influence of epigenetic regulation. A special emphasis will highlight the effect on epigenetic regulation of human's current life habits, external and environmental factors, including food intake, tobacco, air pollution, and antioxidant-based approaches. Additionally, the strategy to quantify oxidative states in humans in order to determine which biological marker could best match a subject's profile will be discussed. Hindawi 2017 2017-05-14 /pmc/articles/PMC5457758/ /pubmed/28607629 http://dx.doi.org/10.1155/2017/2712751 Text en Copyright © 2017 Francesco Angelini 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 Review Article
Angelini, Francesco
Pagano, Francesca
Bordin, Antonella
Milan, Marika
Chimenti, Isotta
Peruzzi, Mariangela
Valenti, Valentina
Marullo, Antonino
Schirone, Leonardo
Palmerio, Silvia
Sciarretta, Sebastiano
Murdoch, Colin E.
Frati, Giacomo
De Falco, Elena
The Impact of Environmental Factors in Influencing Epigenetics Related to Oxidative States in the Cardiovascular System
title The Impact of Environmental Factors in Influencing Epigenetics Related to Oxidative States in the Cardiovascular System
title_full The Impact of Environmental Factors in Influencing Epigenetics Related to Oxidative States in the Cardiovascular System
title_fullStr The Impact of Environmental Factors in Influencing Epigenetics Related to Oxidative States in the Cardiovascular System
title_full_unstemmed The Impact of Environmental Factors in Influencing Epigenetics Related to Oxidative States in the Cardiovascular System
title_short The Impact of Environmental Factors in Influencing Epigenetics Related to Oxidative States in the Cardiovascular System
title_sort impact of environmental factors in influencing epigenetics related to oxidative states in the cardiovascular system
topic Review Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5457758/
https://www.ncbi.nlm.nih.gov/pubmed/28607629
http://dx.doi.org/10.1155/2017/2712751
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