Background\ud \ud Vascular hyperproliferative disorders are characterized by excessive smooth muscle cell (SMC) proliferation leading to vessel remodeling and occlusion. In pulmonary arterial hypertension (PAH), SMC phenotype switching from a terminally differentiated contractile to synthetic state is gaining traction as our understanding of the disease progression improves. While maintenance of SMC contractile phenotype is reportedly orchestrated by a MEF2C-myocardin (MYOCD) interplay, little is known regarding molecular control at this nexus. Moreover, the burgeoning interest in microRNAs (miRs) provides the basis for exploring their modulation of MEF2C-MYOCD signaling, and in turn, a pro-proliferative, synthetic SMC phenotype. We hypothe...
<b>Rationale:</b> Despite improved understanding of the underlying genetics, pulmonary a...
<p>During vascular homeostasis, SMCs maintain a contractile/differentiated phenotype, which changes ...
Rationale: The pathogenesis of PAH remains unclear. The four microRNAs representing the miR-143 and ...
Background\ud \ud Vascular hyperproliferative disorders are characterized by excessive smooth muscle...
BackgroundVascular hyperproliferative disorders are characterized by excessive smooth muscle cell (S...
repression of the MEF2C-MYOCD-leiomodin1 (LMOD1) signaling axis.In SMCs isolated from a PAH patient...
Background Vascular hyperproliferative disorders are characterized by excessive smooth muscle cell (...
BACKGROUND: Vascular hyperproliferative disorders are characterized by excessive smooth muscle cell ...
RationaleRecent studies suggest that microRNAs (miRNAs) play important roles in regulation of pulmon...
<div><p>Pulmonary Arterial Hypertension (PAH) is a progressive devastating disease characterized by ...
Pulmonary Arterial Hypertension (PAH) is a progressive devastating disease characterized by excessiv...
Pulmonary Arterial Hypertension (PAH) is a progressive devastating disease characterized by excessiv...
Dysregulation of miRNAs can contribute to the aetiology of diseases including pulmonary arterial hyp...
Loss of the growth-suppressive effects of bone morphogenetic protein (BMP) signaling has been demons...
Background-Previously we found that smooth muscle cell (SMC)-specific knockout of miR-17 similar to ...
<b>Rationale:</b> Despite improved understanding of the underlying genetics, pulmonary a...
<p>During vascular homeostasis, SMCs maintain a contractile/differentiated phenotype, which changes ...
Rationale: The pathogenesis of PAH remains unclear. The four microRNAs representing the miR-143 and ...
Background\ud \ud Vascular hyperproliferative disorders are characterized by excessive smooth muscle...
BackgroundVascular hyperproliferative disorders are characterized by excessive smooth muscle cell (S...
repression of the MEF2C-MYOCD-leiomodin1 (LMOD1) signaling axis.In SMCs isolated from a PAH patient...
Background Vascular hyperproliferative disorders are characterized by excessive smooth muscle cell (...
BACKGROUND: Vascular hyperproliferative disorders are characterized by excessive smooth muscle cell ...
RationaleRecent studies suggest that microRNAs (miRNAs) play important roles in regulation of pulmon...
<div><p>Pulmonary Arterial Hypertension (PAH) is a progressive devastating disease characterized by ...
Pulmonary Arterial Hypertension (PAH) is a progressive devastating disease characterized by excessiv...
Pulmonary Arterial Hypertension (PAH) is a progressive devastating disease characterized by excessiv...
Dysregulation of miRNAs can contribute to the aetiology of diseases including pulmonary arterial hyp...
Loss of the growth-suppressive effects of bone morphogenetic protein (BMP) signaling has been demons...
Background-Previously we found that smooth muscle cell (SMC)-specific knockout of miR-17 similar to ...
<b>Rationale:</b> Despite improved understanding of the underlying genetics, pulmonary a...
<p>During vascular homeostasis, SMCs maintain a contractile/differentiated phenotype, which changes ...
Rationale: The pathogenesis of PAH remains unclear. The four microRNAs representing the miR-143 and ...