Abnormal endocardial cushion formation is a major cause of congenital heart valve disease, which is a common birth defect with significant morbidity and mortality. Although β-catenin and BMP2 are two well-known regulators of endocardial cushion formation, their interaction in this process is largely unknown. Here, we report that deletion of β-catenin in myocardium results in formation of hypoplastic endocardial cushions accompanying a decrease of mesenchymal cell proliferation. Loss of β-catenin reduced Bmp2 expression in myocardium and SMAD signaling in cushion mesenchyme. Exogenous BMP2 recombinant proteins fully rescued the proliferation defect of mesenchymal cells in cultured heart explants from myocardial β-catenin knockout embryos. Us...
The tight regulation of different signaling systems and the transcriptional and translational networ...
AbstractA hallmark of heart-valve development is the swelling and deposition of extracellular matrix...
Heart formation requires the coordinated recruitment of multiple cardiac progenitor cell populations...
Abnormal endocardial cushion formation is a major cause of congenital heart valve disease, which is ...
During heart development endocardial cells within the atrio-ventricular (AV) region undergo TGFbeta-...
During heart development endocardial cells within the atrio-ventricular (AV) region undergo TGFbeta-...
Wnt/β-catenin signaling is an important regulator of differentiation and morphogenesis that can also...
Endocardial to mesenchymal transformation (EMT) is a fundamental cellular process required for heart...
AIMS: Myxomatous valve disease (MVD) is the most common aetiology of primary mitral regurgitation. R...
Endocardial to mesenchymal transformation (EMT) is a fundamental cellular process required for heart...
Wnt/β-catenin signaling is an important regulator of differentiation and morphogenesis that can also...
Heart valve development proceeds through coordinated steps by which endocardial cushions (ECs) form ...
Endocardial to mesenchymal transformation (EMT) is a fundamental cellular process required for heart...
The inability of the adult mammalian heart to regenerate represents a fundamental barrier in heart f...
<div><p>Endocardial to mesenchymal transformation (EMT) is a fundamental cellular process required f...
The tight regulation of different signaling systems and the transcriptional and translational networ...
AbstractA hallmark of heart-valve development is the swelling and deposition of extracellular matrix...
Heart formation requires the coordinated recruitment of multiple cardiac progenitor cell populations...
Abnormal endocardial cushion formation is a major cause of congenital heart valve disease, which is ...
During heart development endocardial cells within the atrio-ventricular (AV) region undergo TGFbeta-...
During heart development endocardial cells within the atrio-ventricular (AV) region undergo TGFbeta-...
Wnt/β-catenin signaling is an important regulator of differentiation and morphogenesis that can also...
Endocardial to mesenchymal transformation (EMT) is a fundamental cellular process required for heart...
AIMS: Myxomatous valve disease (MVD) is the most common aetiology of primary mitral regurgitation. R...
Endocardial to mesenchymal transformation (EMT) is a fundamental cellular process required for heart...
Wnt/β-catenin signaling is an important regulator of differentiation and morphogenesis that can also...
Heart valve development proceeds through coordinated steps by which endocardial cushions (ECs) form ...
Endocardial to mesenchymal transformation (EMT) is a fundamental cellular process required for heart...
The inability of the adult mammalian heart to regenerate represents a fundamental barrier in heart f...
<div><p>Endocardial to mesenchymal transformation (EMT) is a fundamental cellular process required f...
The tight regulation of different signaling systems and the transcriptional and translational networ...
AbstractA hallmark of heart-valve development is the swelling and deposition of extracellular matrix...
Heart formation requires the coordinated recruitment of multiple cardiac progenitor cell populations...