Cargando…

The role and mechanism of transforming growth factor beta 3 in human myocardial infarction‐induced myocardial fibrosis

Transforming growth factor beta (TGFβ) plays a crucial role in tissue fibrosis. A number of studies have shown that TGFβ3 significantly attenuated tissue fibrosis. However, the mechanism involved in this effect is poorly understood. In this study we found that the expression level of TGFβ3 was highe...

Descripción completa

Detalles Bibliográficos
Autores principales: Xue, Ke, Zhang, Jun, Li, Cong, Li, Jing, Wang, Cong, Zhang, Qingqing, Chen, Xianlu, Yu, Xiaotang, Sun, Lei, Yu, Xiao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6533491/
https://www.ncbi.nlm.nih.gov/pubmed/30983140
http://dx.doi.org/10.1111/jcmm.14313
_version_ 1783421216143441920
author Xue, Ke
Zhang, Jun
Li, Cong
Li, Jing
Wang, Cong
Zhang, Qingqing
Chen, Xianlu
Yu, Xiaotang
Sun, Lei
Yu, Xiao
author_facet Xue, Ke
Zhang, Jun
Li, Cong
Li, Jing
Wang, Cong
Zhang, Qingqing
Chen, Xianlu
Yu, Xiaotang
Sun, Lei
Yu, Xiao
author_sort Xue, Ke
collection PubMed
description Transforming growth factor beta (TGFβ) plays a crucial role in tissue fibrosis. A number of studies have shown that TGFβ3 significantly attenuated tissue fibrosis. However, the mechanism involved in this effect is poorly understood. In this study we found that the expression level of TGFβ3 was higher in human myocardial infarction (MI) tissues than in normal tissues, and interestingly, it increased with the development of fibrosis post‐myocardial infarction (post‐MI). In vitro, human cardiac fibroblasts (CFs) were incubated with angiotensin II (Ang II) to mimic the ischaemic myocardium microenvironment and used to investigate the anti‐fibrotic mechanism of TGFβ3. Then, fibrosis‐related proteins were detected by Western blot. It was revealed that TGFβ3 up‐regulation attenuated the proliferation, migration of human CFs and the expression of collagens, which are the main contributors to fibrosis, promoted the phenotype shift and the cross‐linking of collagens. Importantly, the expression of collagens was higher in the si‐smad7 groups than in the control groups, while silencing smad7 increased the phosphorylation level of the TGFβ/smad signalling pathway. Collectively, these results indicated that TGFβ3 inhibited fibrosis via the TGFβ/smad signalling pathway, possibly attributable to the regulation of smad7, and that TGFβ3 might serve as a potential therapeutic target for myocardial fibrosis post‐MI.
format Online
Article
Text
id pubmed-6533491
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-65334912019-06-01 The role and mechanism of transforming growth factor beta 3 in human myocardial infarction‐induced myocardial fibrosis Xue, Ke Zhang, Jun Li, Cong Li, Jing Wang, Cong Zhang, Qingqing Chen, Xianlu Yu, Xiaotang Sun, Lei Yu, Xiao J Cell Mol Med Original Articles Transforming growth factor beta (TGFβ) plays a crucial role in tissue fibrosis. A number of studies have shown that TGFβ3 significantly attenuated tissue fibrosis. However, the mechanism involved in this effect is poorly understood. In this study we found that the expression level of TGFβ3 was higher in human myocardial infarction (MI) tissues than in normal tissues, and interestingly, it increased with the development of fibrosis post‐myocardial infarction (post‐MI). In vitro, human cardiac fibroblasts (CFs) were incubated with angiotensin II (Ang II) to mimic the ischaemic myocardium microenvironment and used to investigate the anti‐fibrotic mechanism of TGFβ3. Then, fibrosis‐related proteins were detected by Western blot. It was revealed that TGFβ3 up‐regulation attenuated the proliferation, migration of human CFs and the expression of collagens, which are the main contributors to fibrosis, promoted the phenotype shift and the cross‐linking of collagens. Importantly, the expression of collagens was higher in the si‐smad7 groups than in the control groups, while silencing smad7 increased the phosphorylation level of the TGFβ/smad signalling pathway. Collectively, these results indicated that TGFβ3 inhibited fibrosis via the TGFβ/smad signalling pathway, possibly attributable to the regulation of smad7, and that TGFβ3 might serve as a potential therapeutic target for myocardial fibrosis post‐MI. John Wiley and Sons Inc. 2019-04-14 2019-06 /pmc/articles/PMC6533491/ /pubmed/30983140 http://dx.doi.org/10.1111/jcmm.14313 Text en © 2019 The Authors. Journal of Cellular and Molecular Medicine published by John Wiley & Sons Ltd and Foundation for Cellular and Molecular Medicine. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Xue, Ke
Zhang, Jun
Li, Cong
Li, Jing
Wang, Cong
Zhang, Qingqing
Chen, Xianlu
Yu, Xiaotang
Sun, Lei
Yu, Xiao
The role and mechanism of transforming growth factor beta 3 in human myocardial infarction‐induced myocardial fibrosis
title The role and mechanism of transforming growth factor beta 3 in human myocardial infarction‐induced myocardial fibrosis
title_full The role and mechanism of transforming growth factor beta 3 in human myocardial infarction‐induced myocardial fibrosis
title_fullStr The role and mechanism of transforming growth factor beta 3 in human myocardial infarction‐induced myocardial fibrosis
title_full_unstemmed The role and mechanism of transforming growth factor beta 3 in human myocardial infarction‐induced myocardial fibrosis
title_short The role and mechanism of transforming growth factor beta 3 in human myocardial infarction‐induced myocardial fibrosis
title_sort role and mechanism of transforming growth factor beta 3 in human myocardial infarction‐induced myocardial fibrosis
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6533491/
https://www.ncbi.nlm.nih.gov/pubmed/30983140
http://dx.doi.org/10.1111/jcmm.14313
work_keys_str_mv AT xueke theroleandmechanismoftransforminggrowthfactorbeta3inhumanmyocardialinfarctioninducedmyocardialfibrosis
AT zhangjun theroleandmechanismoftransforminggrowthfactorbeta3inhumanmyocardialinfarctioninducedmyocardialfibrosis
AT licong theroleandmechanismoftransforminggrowthfactorbeta3inhumanmyocardialinfarctioninducedmyocardialfibrosis
AT lijing theroleandmechanismoftransforminggrowthfactorbeta3inhumanmyocardialinfarctioninducedmyocardialfibrosis
AT wangcong theroleandmechanismoftransforminggrowthfactorbeta3inhumanmyocardialinfarctioninducedmyocardialfibrosis
AT zhangqingqing theroleandmechanismoftransforminggrowthfactorbeta3inhumanmyocardialinfarctioninducedmyocardialfibrosis
AT chenxianlu theroleandmechanismoftransforminggrowthfactorbeta3inhumanmyocardialinfarctioninducedmyocardialfibrosis
AT yuxiaotang theroleandmechanismoftransforminggrowthfactorbeta3inhumanmyocardialinfarctioninducedmyocardialfibrosis
AT sunlei theroleandmechanismoftransforminggrowthfactorbeta3inhumanmyocardialinfarctioninducedmyocardialfibrosis
AT yuxiao theroleandmechanismoftransforminggrowthfactorbeta3inhumanmyocardialinfarctioninducedmyocardialfibrosis
AT xueke roleandmechanismoftransforminggrowthfactorbeta3inhumanmyocardialinfarctioninducedmyocardialfibrosis
AT zhangjun roleandmechanismoftransforminggrowthfactorbeta3inhumanmyocardialinfarctioninducedmyocardialfibrosis
AT licong roleandmechanismoftransforminggrowthfactorbeta3inhumanmyocardialinfarctioninducedmyocardialfibrosis
AT lijing roleandmechanismoftransforminggrowthfactorbeta3inhumanmyocardialinfarctioninducedmyocardialfibrosis
AT wangcong roleandmechanismoftransforminggrowthfactorbeta3inhumanmyocardialinfarctioninducedmyocardialfibrosis
AT zhangqingqing roleandmechanismoftransforminggrowthfactorbeta3inhumanmyocardialinfarctioninducedmyocardialfibrosis
AT chenxianlu roleandmechanismoftransforminggrowthfactorbeta3inhumanmyocardialinfarctioninducedmyocardialfibrosis
AT yuxiaotang roleandmechanismoftransforminggrowthfactorbeta3inhumanmyocardialinfarctioninducedmyocardialfibrosis
AT sunlei roleandmechanismoftransforminggrowthfactorbeta3inhumanmyocardialinfarctioninducedmyocardialfibrosis
AT yuxiao roleandmechanismoftransforminggrowthfactorbeta3inhumanmyocardialinfarctioninducedmyocardialfibrosis