Back to Search
Start Over
miR-21 enhances cardiac fibrotic remodeling and fibroblast proliferation via CADM1/STAT3 pathway.
- Source :
-
BMC cardiovascular disorders [BMC Cardiovasc Disord] 2017 Mar 23; Vol. 17 (1), pp. 88. Date of Electronic Publication: 2017 Mar 23. - Publication Year :
- 2017
-
Abstract
- Background: Cardiac fibrosis play a key role in the atrial fibrillation pathogenesis but the underlying potential molecular mechanism is still understood. However, potential mechanisms for miR-21 upregulation and its role in cardiac fibrosis remain unclear. The controls cell proliferation and processes fundamental to disease progression.<br />Methods: In this study, immunohistochemistry, real-time RT-PCR, cell transfection, cell cycle, cell proliferation and Western blot were used, respectively.<br />Results: Here we have been demonstrated that the tumor suppressor cell adhesion molecule 1 (CADM1) is the potential target of miR-21. Our study revealed that miR-21 regulation of CADM1 expression, which was decreased in cardiac fibroblasts and fibrosis tissue. The cardiac fibroblasts transfected with miR-21 mimic promoted miR-21 overexpression enhanced STAT3 expression and decreased CADM1 expression. Nevertheless, the cardiac fibroblasts transfected with miR-21 inhibitor obtained the opposite expression result. Furthermore, downexpression of miR-21 suppressed cardiac fibroblast proliferation.<br />Conclusions: These results suggested that miR-21 overexpression promotes cardiac fibrosis via STAT3 signaling pathway by decrease CADM1 expression, indicating miR-21 as an important signaling molecule for cardiac fibrotic remodeling and AF.
- Subjects :
- Adult
Animals
Animals, Newborn
Atrial Fibrillation genetics
Atrial Fibrillation pathology
Atrial Fibrillation physiopathology
Cell Adhesion Molecule-1
Cell Adhesion Molecules genetics
Cells, Cultured
Disease Models, Animal
Female
Fibroblasts pathology
Fibrosis
Gene Expression Regulation
Humans
Immunoglobulins genetics
Male
MicroRNAs genetics
Middle Aged
Myocardium pathology
Rats, Sprague-Dawley
STAT3 Transcription Factor genetics
Signal Transduction
Time Factors
Transfection
Atrial Fibrillation metabolism
Cell Adhesion Molecules metabolism
Cell Proliferation
Fibroblasts metabolism
Immunoglobulins metabolism
MicroRNAs metabolism
Myocardium metabolism
STAT3 Transcription Factor metabolism
Ventricular Remodeling
Subjects
Details
- Language :
- English
- ISSN :
- 1471-2261
- Volume :
- 17
- Issue :
- 1
- Database :
- MEDLINE
- Journal :
- BMC cardiovascular disorders
- Publication Type :
- Academic Journal
- Accession number :
- 28335740
- Full Text :
- https://doi.org/10.1186/s12872-017-0520-7