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Role of oxidative stress in pathogenesis of metabolic syndrome

The metabolic syndrome (MS) recognized as a major cause of type 2 diabetes and cardiovascular diseases, has become one of the major public health challenges worldwide. The pathogenesis of the metabolic syndrome is multiple and still poorly understood. No single factor has yet been identified as an u...

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Autores principales: Mahjoub, Soleiman, Masrour-Roudsari, Jila
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Babol University of Medical Sciences 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4600138/
https://www.ncbi.nlm.nih.gov/pubmed/26557292
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author Mahjoub, Soleiman
Masrour-Roudsari, Jila
author_facet Mahjoub, Soleiman
Masrour-Roudsari, Jila
author_sort Mahjoub, Soleiman
collection PubMed
description The metabolic syndrome (MS) recognized as a major cause of type 2 diabetes and cardiovascular diseases, has become one of the major public health challenges worldwide. The pathogenesis of the metabolic syndrome is multiple and still poorly understood. No single factor has yet been identified as an underlying causal factor. There is a growing belief, however, that obesity, especially visceral obesity, may play an important role in the development of the syndrome. Visceral adiposity seems to be an independent predictor of insulin sensitivity, impaired glucose tolerance, dyslipidemia and elevated blood pressure. An increasing number of studies confirm that oxidative stress, chronic inflammation and angiogenesis all play important roles in the pathogenesis of MS. Chronic hyperglycemia causes oxidative stress in tissues prone to complications in patients with diabetes. Oxidative stress occurs in a cellular system when the production of free radical moieties exceeds the antioxidant capacity of that system. If cellular antioxidants do not remove free radicals, radicals attack and damage proteins, lipids, and nucleic acids. The oxidized or nitrosylated products of free radical attack have decreased biological activity, leading to loss of energy metabolism, cell signaling, transport, and other major functions. These altered products are also targeted for proteosome degradation, further decreasing cellular function. Accumulation of such injury ultimately leads a cell to die through necrotic or apoptotic mechanisms. In conclusion, a puzzle of many pieces of evidence suggests that free radical overgeneration may be considered the key in the generation of insulin resistance, diabetes, and cardiovascular disease.
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spelling pubmed-46001382015-11-09 Role of oxidative stress in pathogenesis of metabolic syndrome Mahjoub, Soleiman Masrour-Roudsari, Jila Caspian J Intern Med Review Article The metabolic syndrome (MS) recognized as a major cause of type 2 diabetes and cardiovascular diseases, has become one of the major public health challenges worldwide. The pathogenesis of the metabolic syndrome is multiple and still poorly understood. No single factor has yet been identified as an underlying causal factor. There is a growing belief, however, that obesity, especially visceral obesity, may play an important role in the development of the syndrome. Visceral adiposity seems to be an independent predictor of insulin sensitivity, impaired glucose tolerance, dyslipidemia and elevated blood pressure. An increasing number of studies confirm that oxidative stress, chronic inflammation and angiogenesis all play important roles in the pathogenesis of MS. Chronic hyperglycemia causes oxidative stress in tissues prone to complications in patients with diabetes. Oxidative stress occurs in a cellular system when the production of free radical moieties exceeds the antioxidant capacity of that system. If cellular antioxidants do not remove free radicals, radicals attack and damage proteins, lipids, and nucleic acids. The oxidized or nitrosylated products of free radical attack have decreased biological activity, leading to loss of energy metabolism, cell signaling, transport, and other major functions. These altered products are also targeted for proteosome degradation, further decreasing cellular function. Accumulation of such injury ultimately leads a cell to die through necrotic or apoptotic mechanisms. In conclusion, a puzzle of many pieces of evidence suggests that free radical overgeneration may be considered the key in the generation of insulin resistance, diabetes, and cardiovascular disease. Babol University of Medical Sciences 2012 /pmc/articles/PMC4600138/ /pubmed/26557292 Text en This is an Open Access article distributed under the terms of the Creative Commons Attribution License, (http://creativecommons.org/licenses/by/3.0/) which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Review Article
Mahjoub, Soleiman
Masrour-Roudsari, Jila
Role of oxidative stress in pathogenesis of metabolic syndrome
title Role of oxidative stress in pathogenesis of metabolic syndrome
title_full Role of oxidative stress in pathogenesis of metabolic syndrome
title_fullStr Role of oxidative stress in pathogenesis of metabolic syndrome
title_full_unstemmed Role of oxidative stress in pathogenesis of metabolic syndrome
title_short Role of oxidative stress in pathogenesis of metabolic syndrome
title_sort role of oxidative stress in pathogenesis of metabolic syndrome
topic Review Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4600138/
https://www.ncbi.nlm.nih.gov/pubmed/26557292
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