Molecular mechanism of PPAR in the regulation of age-related inflammation

Abstract Evidence from many recent studies has linked uncontrolled inflammatory processes to aging and aging-related diseases. Decreased a nuclear receptor subfamily of transcription factors, peroxisome proliferator-activated receptors (PPARs) activity is closely associated with increased levels of...

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Published inAgeing research reviews Vol. 7; no. 2; pp. 126 - 136
Main Authors Chung, Jae Heun, Seo, Arnold Y, Chung, Sang Woon, Kim, Mi Kyung, Leeuwenburgh, Christiaan, Yu, Byung Pal, Chung, Hae Young
Format Journal Article
LanguageEnglish
Published England 01.04.2008
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Abstract Abstract Evidence from many recent studies has linked uncontrolled inflammatory processes to aging and aging-related diseases. Decreased a nuclear receptor subfamily of transcription factors, peroxisome proliferator-activated receptors (PPARs) activity is closely associated with increased levels of inflammatory mediators during the aging process. The anti-inflammatory action of PPARs is substantiated by both in vitro and in vivo studies that signify the importance of PPARs as major players in the pathogenesis of many inflammatory diseases. In this review, we highlight the molecular mechanisms and roles of PPARα, γ in regulation of age-related inflammation. By understanding these current findings of PPARs, we open up the possibility of developing new therapeutic agents that modulate these nuclear receptors to control various inflammatory diseases such as atherosclerosis, vascular diseases, Alzheimer's disease, and cancer.
AbstractList Abstract Evidence from many recent studies has linked uncontrolled inflammatory processes to aging and aging-related diseases. Decreased a nuclear receptor subfamily of transcription factors, peroxisome proliferator-activated receptors (PPARs) activity is closely associated with increased levels of inflammatory mediators during the aging process. The anti-inflammatory action of PPARs is substantiated by both in vitro and in vivo studies that signify the importance of PPARs as major players in the pathogenesis of many inflammatory diseases. In this review, we highlight the molecular mechanisms and roles of PPARα, γ in regulation of age-related inflammation. By understanding these current findings of PPARs, we open up the possibility of developing new therapeutic agents that modulate these nuclear receptors to control various inflammatory diseases such as atherosclerosis, vascular diseases, Alzheimer's disease, and cancer.
Evidence from many recent studies has linked uncontrolled inflammatory processes to aging and aging-related diseases. Decreased a nuclear receptor subfamily of transcription factors, peroxisome proliferator-activated receptors (PPARs) activity is closely associated with increased levels of inflammatory mediators during the aging process. The anti-inflammatory action of PPARs is substantiated by both in vitro and in vivo studies that signify the importance of PPARs as major players in the pathogenesis of many inflammatory diseases. In this review, we highlight the molecular mechanisms and roles of PPARalpha, gamma in regulation of age-related inflammation. By understanding these current findings of PPARs, we open up the possibility of developing new therapeutic agents that modulate these nuclear receptors to control various inflammatory diseases such as atherosclerosis, vascular diseases, Alzheimer's disease, and cancer.
Author Leeuwenburgh, Christiaan
Chung, Jae Heun
Yu, Byung Pal
Kim, Mi Kyung
Seo, Arnold Y
Chung, Hae Young
Chung, Sang Woon
Author_xml – sequence: 1
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  fullname: Leeuwenburgh, Christiaan
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  fullname: Yu, Byung Pal
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  fullname: Chung, Hae Young
BackLink https://www.ncbi.nlm.nih.gov/pubmed/18313368$$D View this record in MEDLINE/PubMed
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Snippet Abstract Evidence from many recent studies has linked uncontrolled inflammatory processes to aging and aging-related diseases. Decreased a nuclear receptor...
Evidence from many recent studies has linked uncontrolled inflammatory processes to aging and aging-related diseases. Decreased a nuclear receptor subfamily of...
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SubjectTerms Aging - drug effects
Aging - physiology
Alzheimer Disease - drug therapy
Alzheimer Disease - metabolism
Alzheimer Disease - physiopathology
Animals
Humans
Inflammation - metabolism
Inflammation - physiopathology
Internal Medicine
Neoplasms - drug therapy
Neoplasms - etiology
Neoplasms - physiopathology
Neurology
NF-kappa B - metabolism
PPAR alpha - agonists
PPAR alpha - physiology
PPAR gamma - agonists
PPAR gamma - physiology
Vascular Diseases - drug therapy
Vascular Diseases - metabolism
Vascular Diseases - physiopathology
Title Molecular mechanism of PPAR in the regulation of age-related inflammation
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https://www.ncbi.nlm.nih.gov/pubmed/18313368
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