Potential Mechanisms Linking Atherosclerosis and Increased Cardiovascular Risk in COPD: Focus On Sirtuins
The development of atherosclerosis is a multi-step process, at least in part controlled by the vascular endothelium function. Observations in humans and experimental models of atherosclerosis have identified monocyte recruitment as an early event in atherogenesis. Chronic inflammation is associated...
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doaj-a7beb622d77447168e14ea4334d505912020-11-24T23:51:19ZengMDPI AGInternational Journal of Molecular Sciences1422-00672013-06-01146126961271310.3390/ijms140612696Potential Mechanisms Linking Atherosclerosis and Increased Cardiovascular Risk in COPD: Focus On SirtuinsNicola FerraraGennaro MazzarellaAurora DanieleMichele CelluraleFederica FaticaAndrea BiancoViviana TurchiarelliGraziamaria CorbiThe development of atherosclerosis is a multi-step process, at least in part controlled by the vascular endothelium function. Observations in humans and experimental models of atherosclerosis have identified monocyte recruitment as an early event in atherogenesis. Chronic inflammation is associated with ageing and its related diseases (e.g., atherosclerosis and chronic obstructive pulmonary disease). Recently it has been discovered that Sirtuins (NAD+-dependent deacetylases) represent a pivotal regulator of longevity and health. They appear to have a prominent role in vascular biology and regulate aspects of age-dependent atherosclerosis. Many studies demonstrate that SIRT1 exhibits anti-inflammatory properties in vitro (e.g., fatty acid-induced inflammation), in vivo (e.g., atherosclerosis, sustainment of normal immune function in knock-out mice) and in clinical studies (e.g., patients with chronic obstructive pulmonary disease). Because of a significant reduction of SIRT1 in rodent lungs exposed to cigarette smoke and in lungs of patients with chronic obstructive pulmonary disease (COPD), activation of SIRT1 may be a potential target for chronic obstructive pulmonary disease therapy. We review the inflammatory mechanisms involved in COPD-CVD coexistence and the potential role of SIRT1 in the regulation of these systems.http://www.mdpi.com/1422-0067/14/6/12696sirtuinsoxidative stressCOPDcardiovascular diseasesatherosclerosisinflammationexercise trainingageing |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Nicola Ferrara Gennaro Mazzarella Aurora Daniele Michele Cellurale Federica Fatica Andrea Bianco Viviana Turchiarelli Graziamaria Corbi |
spellingShingle |
Nicola Ferrara Gennaro Mazzarella Aurora Daniele Michele Cellurale Federica Fatica Andrea Bianco Viviana Turchiarelli Graziamaria Corbi Potential Mechanisms Linking Atherosclerosis and Increased Cardiovascular Risk in COPD: Focus On Sirtuins International Journal of Molecular Sciences sirtuins oxidative stress COPD cardiovascular diseases atherosclerosis inflammation exercise training ageing |
author_facet |
Nicola Ferrara Gennaro Mazzarella Aurora Daniele Michele Cellurale Federica Fatica Andrea Bianco Viviana Turchiarelli Graziamaria Corbi |
author_sort |
Nicola Ferrara |
title |
Potential Mechanisms Linking Atherosclerosis and Increased Cardiovascular Risk in COPD: Focus On Sirtuins |
title_short |
Potential Mechanisms Linking Atherosclerosis and Increased Cardiovascular Risk in COPD: Focus On Sirtuins |
title_full |
Potential Mechanisms Linking Atherosclerosis and Increased Cardiovascular Risk in COPD: Focus On Sirtuins |
title_fullStr |
Potential Mechanisms Linking Atherosclerosis and Increased Cardiovascular Risk in COPD: Focus On Sirtuins |
title_full_unstemmed |
Potential Mechanisms Linking Atherosclerosis and Increased Cardiovascular Risk in COPD: Focus On Sirtuins |
title_sort |
potential mechanisms linking atherosclerosis and increased cardiovascular risk in copd: focus on sirtuins |
publisher |
MDPI AG |
series |
International Journal of Molecular Sciences |
issn |
1422-0067 |
publishDate |
2013-06-01 |
description |
The development of atherosclerosis is a multi-step process, at least in part controlled by the vascular endothelium function. Observations in humans and experimental models of atherosclerosis have identified monocyte recruitment as an early event in atherogenesis. Chronic inflammation is associated with ageing and its related diseases (e.g., atherosclerosis and chronic obstructive pulmonary disease). Recently it has been discovered that Sirtuins (NAD+-dependent deacetylases) represent a pivotal regulator of longevity and health. They appear to have a prominent role in vascular biology and regulate aspects of age-dependent atherosclerosis. Many studies demonstrate that SIRT1 exhibits anti-inflammatory properties in vitro (e.g., fatty acid-induced inflammation), in vivo (e.g., atherosclerosis, sustainment of normal immune function in knock-out mice) and in clinical studies (e.g., patients with chronic obstructive pulmonary disease). Because of a significant reduction of SIRT1 in rodent lungs exposed to cigarette smoke and in lungs of patients with chronic obstructive pulmonary disease (COPD), activation of SIRT1 may be a potential target for chronic obstructive pulmonary disease therapy. We review the inflammatory mechanisms involved in COPD-CVD coexistence and the potential role of SIRT1 in the regulation of these systems. |
topic |
sirtuins oxidative stress COPD cardiovascular diseases atherosclerosis inflammation exercise training ageing |
url |
http://www.mdpi.com/1422-0067/14/6/12696 |
work_keys_str_mv |
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