Stretch is essential for maintaining the contractile phenotype of vascular smooth muscle cells, and small non-coding microRNAs are known to be important in this process. Using a Dicer knockout model, we have previously reported that microRNAs are essential for stretch-induced differentiation and regulation of L-type calcium channel expression. The aim of this study was to investigate the importance of the smooth muscle-enriched miR-143/145 microRNA cluster for stretch-induced differentiation of the portal vein
Phenotypic modulation of smooth muscle cells (SMCs) plays a key role in vascular disease, including ...
<div><h3>Objectives</h3><p>Stretch affects vascular smooth muscle cell proliferation and apoptosis, ...
Objectives: Stretch affects vascular smooth muscle cell proliferation and apoptosis, and several res...
Stretch of the vascular wall is an important stimulus to maintain smooth muscle contractile differen...
The phenotype of smooth muscle cells is regulated by multiple environmental factors including mechan...
Vascular smooth muscle cells are constantly exposed to mechanical force by the blood pressure, which...
Vascular smooth muscle cells are constantly exposed to mechanical force by the blood pressure, which...
Vascular smooth muscle cells are constantly exposed to mechanical force by the blood pressure, which...
<div><p>Vascular smooth muscle cells are constantly exposed to mechanical force by the blood pressur...
Intraluminal pressure has a significant impact on vascular adaptability, phenotype and regulation of...
Smooth muscle cells residing in the blood vessel media are constantly exposed to mechanical forces e...
The mechanical forces acting onsmooth muscle cells in the vascular wall are known to regulate proces...
Phenotype modulation of vascular smooth muscle cells (VSMCs) plays an important role in the pathogen...
Phenotype modulation of vascular smooth muscle cells (VSMCs) plays an important role in the pathogen...
OBJECTIVE: Regulation of vascular smooth muscle (VSM) proliferation and contractile differentiation ...
Phenotypic modulation of smooth muscle cells (SMCs) plays a key role in vascular disease, including ...
<div><h3>Objectives</h3><p>Stretch affects vascular smooth muscle cell proliferation and apoptosis, ...
Objectives: Stretch affects vascular smooth muscle cell proliferation and apoptosis, and several res...
Stretch of the vascular wall is an important stimulus to maintain smooth muscle contractile differen...
The phenotype of smooth muscle cells is regulated by multiple environmental factors including mechan...
Vascular smooth muscle cells are constantly exposed to mechanical force by the blood pressure, which...
Vascular smooth muscle cells are constantly exposed to mechanical force by the blood pressure, which...
Vascular smooth muscle cells are constantly exposed to mechanical force by the blood pressure, which...
<div><p>Vascular smooth muscle cells are constantly exposed to mechanical force by the blood pressur...
Intraluminal pressure has a significant impact on vascular adaptability, phenotype and regulation of...
Smooth muscle cells residing in the blood vessel media are constantly exposed to mechanical forces e...
The mechanical forces acting onsmooth muscle cells in the vascular wall are known to regulate proces...
Phenotype modulation of vascular smooth muscle cells (VSMCs) plays an important role in the pathogen...
Phenotype modulation of vascular smooth muscle cells (VSMCs) plays an important role in the pathogen...
OBJECTIVE: Regulation of vascular smooth muscle (VSM) proliferation and contractile differentiation ...
Phenotypic modulation of smooth muscle cells (SMCs) plays a key role in vascular disease, including ...
<div><h3>Objectives</h3><p>Stretch affects vascular smooth muscle cell proliferation and apoptosis, ...
Objectives: Stretch affects vascular smooth muscle cell proliferation and apoptosis, and several res...