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The Roles of Matrix Stiffness and ß-Catenin Signaling in Endothelial-to-Mesenchymal Transition of Aortic Valve Endothelial Cells.
- Source :
-
Cardiovascular engineering and technology [Cardiovasc Eng Technol] 2018 Jun; Vol. 9 (2), pp. 158-167. Date of Electronic Publication: 2018 May 14. - Publication Year :
- 2018
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Abstract
- Valve stiffening is a hallmark of aortic valve stenosis caused by excess extracellular matrix accumulation by myofibroblasts. We aimed to elucidate whether matrix stiffness regulates endothelial-to-mesenchymal transition (EndMT) of adult valvular endothelial cells (VECs) to myofibroblasts as a mechanism to further promote valve fibrosis. In addition, we specifically examined the role of the Wnt/β-catenin signaling pathway in the development of myofibroblasts during EndMT, as Wnt/β-catenin signaling has been implicated in EndMT during heart development, is reactivated in valve disease, and is required for mechanically-regulated myofibrogenesis of valve interstitial cells. Clonally derived porcine VECs were cultured on soft (5 kPa) or stiff (50 kPa) silicone Sylgard 527 substrates and treated with transforming growth factor (TGF)-β1 to induce EndMT. Immunofluorescent staining revealed that TGF-β1 preferentially promoted EndMT in VECs on stiffer substrates, evidenced by a decrease in the endothelial marker VE-cadherin and an increase in the myofibroblast marker α-smooth muscle actin (α-SMA). These changes were accompanied by β-catenin nuclear localization both in vitro and in vivo, assessed by immunostaining. Degradation of β-catenin with endostatin reduced VEC myofibroblast transition, as indicated by decreased α-SMA fiber expression. We conclude that TGF-β1-induced EndMT in aortic VECs is dependent on matrix stiffness and Wnt/β-catenin signaling promotes myofibrogenesis during EndMT.
- Subjects :
- Actins metabolism
Animals
Antigens, CD metabolism
Aortic Valve drug effects
Aortic Valve pathology
Cadherins metabolism
Cells, Cultured
Elasticity
Endostatins pharmacology
Endothelial Cells drug effects
Endothelial Cells pathology
Extracellular Matrix drug effects
Extracellular Matrix pathology
Fibrosis
Myofibroblasts drug effects
Myofibroblasts pathology
Phenotype
Proteolysis
Stress, Mechanical
Sus scrofa
Transforming Growth Factor beta1 pharmacology
Aortic Valve metabolism
Endothelial Cells metabolism
Epithelial-Mesenchymal Transition drug effects
Extracellular Matrix metabolism
Mechanotransduction, Cellular drug effects
Myofibroblasts metabolism
Wnt Signaling Pathway drug effects
beta Catenin metabolism
Subjects
Details
- Language :
- English
- ISSN :
- 1869-4098
- Volume :
- 9
- Issue :
- 2
- Database :
- MEDLINE
- Journal :
- Cardiovascular engineering and technology
- Publication Type :
- Academic Journal
- Accession number :
- 29761409
- Full Text :
- https://doi.org/10.1007/s13239-018-0363-0