Reduced Proteolytic Cleavage of von Willebrand Factor Leads to Aortic Valve Stenosis and Load-Dependent Ventricular Remodeling.
JACC Basic Transl Sci
; 7(7): 642-655, 2022 Jul.
Article
em En
| MEDLINE
| ID: mdl-35958695
We hypothesized that excess endothelial-associated von Willebrand factor (vWF) and secondary platelet adhesion contribute to aortic valve stenosis (AS). We studied hyperlipidemic mice lacking ADAMTS13 (LDLR -/- AD13 -/- ), which cleaves endothelial-associated vWF multimers. On echocardiography and molecular imaging, LDLR -/- AD13 -/- compared with control strains had increased aortic endothelial vWF and platelet adhesion and developed hemodynamically significant AS, arterial stiffening, high valvulo-aortic impedance, and secondary load-dependent reduction in LV systolic function. Histology revealed leaflet thickening and calcification with valve interstitial cell myofibroblastic and osteogenic transformation, and evidence for TGFß1 pathway activation. We conclude that valve leaflet endothelial vWF-platelet interactions promote AS through juxtacrine platelet signaling.
AS, aortic valve stenosis; MMP, matrix metalloproteinase; PMV, platelet microvesicles; TGF, transforming growth factor; VEC, valvular endothelial cell; VIC, valvular interstitial cell; WSD, Western-style diet; aortic valve stenosis; echocardiography; pSMAD2, phosphorylated SMAD2; vWF, von Willebrand factor; von Willebrand factor
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Base de dados:
MEDLINE
Idioma:
En
Ano de publicação:
2022
Tipo de documento:
Article
País de afiliação:
Estados Unidos