Cargando…

PREMATURE CARDIAC SENESCENCE IN DahlS.Z-Lepr(fa)/Lepr(fa) RATS AS A NEW ANIMAL MODEL OF METABOLIC SYNDROME

Aging is accelerated by metabolic and cardiovascular diseases, and the risk of these diseases increases with age. Obesity is an important risk factor for many age-related diseases and is linked to reduced telomere length in white blood cells. We investigated whether cardiac senescence might be enhan...

Descripción completa

Detalles Bibliográficos
Autores principales: TAKAHASHI, KEIJI, TAKATSU, MIWA, HATTORI, TAKUYA, MURASE, TAMAYO, OHURA, SAE, TAKESHITA, YUURI, WATANABE, SHOGO, MUROHARA, TOYOAKI, NAGATA, KOHZO
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nagoya University 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4345737/
https://www.ncbi.nlm.nih.gov/pubmed/25129990
_version_ 1782359618783019008
author TAKAHASHI, KEIJI
TAKATSU, MIWA
HATTORI, TAKUYA
MURASE, TAMAYO
OHURA, SAE
TAKESHITA, YUURI
WATANABE, SHOGO
MUROHARA, TOYOAKI
NAGATA, KOHZO
author_facet TAKAHASHI, KEIJI
TAKATSU, MIWA
HATTORI, TAKUYA
MURASE, TAMAYO
OHURA, SAE
TAKESHITA, YUURI
WATANABE, SHOGO
MUROHARA, TOYOAKI
NAGATA, KOHZO
author_sort TAKAHASHI, KEIJI
collection PubMed
description Aging is accelerated by metabolic and cardiovascular diseases, and the risk of these diseases increases with age. Obesity is an important risk factor for many age-related diseases and is linked to reduced telomere length in white blood cells. We investigated whether cardiac senescence might be enhanced in DahlS.Z-Lepr(fa)/Lepr(fa) (DS/obese) rats, which we recently established as a new animal model of metabolic syndrome. The heart of DS/obese rats was compared with that of homozygous lean littermates (DahlS.Z-Lepr (+)/Lepr (+), or DS/lean, rats). DS/obese rats manifested hypertension as well as left ventricular hypertrophy, fibrosis, and diastolic dysfunction at 18 weeks of age. Myocardial oxidative stress and inflammation were increased in DS/obese rats compared with DS/lean rats. Telomere length in myocardial cells did not differ between the two rat strains, whereas telomerase activity and expression of the telomerase reverse transcriptase gene were increased in DS/obese rats. Expression of the senescence-associated genes for checkpoint kinase 2 (Chk2), p53, and p21 as well as that of genes related to the renin-angiotensin-aldosterone system were also up-regulated in the DS/obese rat heart. Our results indicate that DS/obese rats undergo premature cardiac senescence as well as cardiac remodeling in association with the development of diastolic dysfunction in these animals.
format Online
Article
Text
id pubmed-4345737
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Nagoya University
record_format MEDLINE/PubMed
spelling pubmed-43457372015-03-04 PREMATURE CARDIAC SENESCENCE IN DahlS.Z-Lepr(fa)/Lepr(fa) RATS AS A NEW ANIMAL MODEL OF METABOLIC SYNDROME TAKAHASHI, KEIJI TAKATSU, MIWA HATTORI, TAKUYA MURASE, TAMAYO OHURA, SAE TAKESHITA, YUURI WATANABE, SHOGO MUROHARA, TOYOAKI NAGATA, KOHZO Nagoya J Med Sci Original Paper Aging is accelerated by metabolic and cardiovascular diseases, and the risk of these diseases increases with age. Obesity is an important risk factor for many age-related diseases and is linked to reduced telomere length in white blood cells. We investigated whether cardiac senescence might be enhanced in DahlS.Z-Lepr(fa)/Lepr(fa) (DS/obese) rats, which we recently established as a new animal model of metabolic syndrome. The heart of DS/obese rats was compared with that of homozygous lean littermates (DahlS.Z-Lepr (+)/Lepr (+), or DS/lean, rats). DS/obese rats manifested hypertension as well as left ventricular hypertrophy, fibrosis, and diastolic dysfunction at 18 weeks of age. Myocardial oxidative stress and inflammation were increased in DS/obese rats compared with DS/lean rats. Telomere length in myocardial cells did not differ between the two rat strains, whereas telomerase activity and expression of the telomerase reverse transcriptase gene were increased in DS/obese rats. Expression of the senescence-associated genes for checkpoint kinase 2 (Chk2), p53, and p21 as well as that of genes related to the renin-angiotensin-aldosterone system were also up-regulated in the DS/obese rat heart. Our results indicate that DS/obese rats undergo premature cardiac senescence as well as cardiac remodeling in association with the development of diastolic dysfunction in these animals. Nagoya University 2014-02 /pmc/articles/PMC4345737/ /pubmed/25129990 Text en http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an Open Access article distributed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License. To view the details of this license, please visit (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Paper
TAKAHASHI, KEIJI
TAKATSU, MIWA
HATTORI, TAKUYA
MURASE, TAMAYO
OHURA, SAE
TAKESHITA, YUURI
WATANABE, SHOGO
MUROHARA, TOYOAKI
NAGATA, KOHZO
PREMATURE CARDIAC SENESCENCE IN DahlS.Z-Lepr(fa)/Lepr(fa) RATS AS A NEW ANIMAL MODEL OF METABOLIC SYNDROME
title PREMATURE CARDIAC SENESCENCE IN DahlS.Z-Lepr(fa)/Lepr(fa) RATS AS A NEW ANIMAL MODEL OF METABOLIC SYNDROME
title_full PREMATURE CARDIAC SENESCENCE IN DahlS.Z-Lepr(fa)/Lepr(fa) RATS AS A NEW ANIMAL MODEL OF METABOLIC SYNDROME
title_fullStr PREMATURE CARDIAC SENESCENCE IN DahlS.Z-Lepr(fa)/Lepr(fa) RATS AS A NEW ANIMAL MODEL OF METABOLIC SYNDROME
title_full_unstemmed PREMATURE CARDIAC SENESCENCE IN DahlS.Z-Lepr(fa)/Lepr(fa) RATS AS A NEW ANIMAL MODEL OF METABOLIC SYNDROME
title_short PREMATURE CARDIAC SENESCENCE IN DahlS.Z-Lepr(fa)/Lepr(fa) RATS AS A NEW ANIMAL MODEL OF METABOLIC SYNDROME
title_sort premature cardiac senescence in dahls.z-lepr(fa)/lepr(fa) rats as a new animal model of metabolic syndrome
topic Original Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4345737/
https://www.ncbi.nlm.nih.gov/pubmed/25129990
work_keys_str_mv AT takahashikeiji prematurecardiacsenescenceindahlszleprfaleprfaratsasanewanimalmodelofmetabolicsyndrome
AT takatsumiwa prematurecardiacsenescenceindahlszleprfaleprfaratsasanewanimalmodelofmetabolicsyndrome
AT hattoritakuya prematurecardiacsenescenceindahlszleprfaleprfaratsasanewanimalmodelofmetabolicsyndrome
AT murasetamayo prematurecardiacsenescenceindahlszleprfaleprfaratsasanewanimalmodelofmetabolicsyndrome
AT ohurasae prematurecardiacsenescenceindahlszleprfaleprfaratsasanewanimalmodelofmetabolicsyndrome
AT takeshitayuuri prematurecardiacsenescenceindahlszleprfaleprfaratsasanewanimalmodelofmetabolicsyndrome
AT watanabeshogo prematurecardiacsenescenceindahlszleprfaleprfaratsasanewanimalmodelofmetabolicsyndrome
AT muroharatoyoaki prematurecardiacsenescenceindahlszleprfaleprfaratsasanewanimalmodelofmetabolicsyndrome
AT nagatakohzo prematurecardiacsenescenceindahlszleprfaleprfaratsasanewanimalmodelofmetabolicsyndrome