MicroRNA-208a increases myocardial fibrosis via endoglin in volume overloading heart.

MicroRNA-208a (mir-208a) is essential for cardiac hypertrophy and fibrosis. Endoglin, a co-receptor of transforming growth factor-β is also essential for cardiac fibrosis. Endoglin has been shown to be a target of mir-208a in the in vitro mechanical stress model. Volume overload can lead to heart fa...

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Main Authors: Bao-Wei Wang, Gong-Jhe Wu, Wen-Ping Cheng, Kou-Gi Shyu
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3879305?pdf=render
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spelling doaj-54dc06999a9c4ea7a2d3fa5aad1edd922020-11-25T01:42:24ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0191e8418810.1371/journal.pone.0084188MicroRNA-208a increases myocardial fibrosis via endoglin in volume overloading heart.Bao-Wei WangGong-Jhe WuWen-Ping ChengKou-Gi ShyuMicroRNA-208a (mir-208a) is essential for cardiac hypertrophy and fibrosis. Endoglin, a co-receptor of transforming growth factor-β is also essential for cardiac fibrosis. Endoglin has been shown to be a target of mir-208a in the in vitro mechanical stress model. Volume overload can lead to heart failure and cardiac fibrosis. The role of mir-208a and endoglin in volume overload heart failure is well known. We sought to investigate the mechanism of regulation of mir-208a and endoglin in volume overload-induced heart failure. Aorta-caval (AV) shunt was performed in adult Sprague-Dawley rats to induce volume overload. Heart weight and heart weight/body weight ratio significantly increased in AV shunt animals. AV shunt significantly increased left ventricular end-diastolic dimension as compared to sham group. Mir-208a was significantly induced by AV shunt from 3 to 14 days. Endoglin, myosin heavy chain-β and brain natriuretic peptide were significantly induced by AV shunt from 3 to 14 days. Overexpression of mir-208a in the sham group without AV shunt significantly increased endoglin expression similar to the AV shunt group. Antagomir-208a attenuated the endoglin expression induced by AV shunt. Pretreatment with atorvastatin also attenuated the endoglin expression induced by AV shunt. AV shunt significantly increased myocardial fibrosis as compared to sham group. Overexpression of mir-208a in the sham group significantly increased myocardial fibrosis. Antagomir-208a and atorvastatin significantly attenuated the myocardial fibrosis induced by AV shunt. In conclusion, mir-208a increased endoglin expression to induce myocardial fibrosis in volume overloaded heart failure. Treatment with atorvastatin can attenuate the myocardial fibrosis induced by volume overload through inhibition of endoglin expression.http://europepmc.org/articles/PMC3879305?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Bao-Wei Wang
Gong-Jhe Wu
Wen-Ping Cheng
Kou-Gi Shyu
spellingShingle Bao-Wei Wang
Gong-Jhe Wu
Wen-Ping Cheng
Kou-Gi Shyu
MicroRNA-208a increases myocardial fibrosis via endoglin in volume overloading heart.
PLoS ONE
author_facet Bao-Wei Wang
Gong-Jhe Wu
Wen-Ping Cheng
Kou-Gi Shyu
author_sort Bao-Wei Wang
title MicroRNA-208a increases myocardial fibrosis via endoglin in volume overloading heart.
title_short MicroRNA-208a increases myocardial fibrosis via endoglin in volume overloading heart.
title_full MicroRNA-208a increases myocardial fibrosis via endoglin in volume overloading heart.
title_fullStr MicroRNA-208a increases myocardial fibrosis via endoglin in volume overloading heart.
title_full_unstemmed MicroRNA-208a increases myocardial fibrosis via endoglin in volume overloading heart.
title_sort microrna-208a increases myocardial fibrosis via endoglin in volume overloading heart.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description MicroRNA-208a (mir-208a) is essential for cardiac hypertrophy and fibrosis. Endoglin, a co-receptor of transforming growth factor-β is also essential for cardiac fibrosis. Endoglin has been shown to be a target of mir-208a in the in vitro mechanical stress model. Volume overload can lead to heart failure and cardiac fibrosis. The role of mir-208a and endoglin in volume overload heart failure is well known. We sought to investigate the mechanism of regulation of mir-208a and endoglin in volume overload-induced heart failure. Aorta-caval (AV) shunt was performed in adult Sprague-Dawley rats to induce volume overload. Heart weight and heart weight/body weight ratio significantly increased in AV shunt animals. AV shunt significantly increased left ventricular end-diastolic dimension as compared to sham group. Mir-208a was significantly induced by AV shunt from 3 to 14 days. Endoglin, myosin heavy chain-β and brain natriuretic peptide were significantly induced by AV shunt from 3 to 14 days. Overexpression of mir-208a in the sham group without AV shunt significantly increased endoglin expression similar to the AV shunt group. Antagomir-208a attenuated the endoglin expression induced by AV shunt. Pretreatment with atorvastatin also attenuated the endoglin expression induced by AV shunt. AV shunt significantly increased myocardial fibrosis as compared to sham group. Overexpression of mir-208a in the sham group significantly increased myocardial fibrosis. Antagomir-208a and atorvastatin significantly attenuated the myocardial fibrosis induced by AV shunt. In conclusion, mir-208a increased endoglin expression to induce myocardial fibrosis in volume overloaded heart failure. Treatment with atorvastatin can attenuate the myocardial fibrosis induced by volume overload through inhibition of endoglin expression.
url http://europepmc.org/articles/PMC3879305?pdf=render
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