Intraluminal pressure has a significant impact on vascular adaptability, phenotype and regulation of blood flow and pressure. On one hand, increased pressure/stretch for a prolonged time can cause structural changes in vessel wall; on the other hand, lack of pressure/stretch can promote a phenotype shift. This thesis investigates novel roles of microRNAs and protein tyrosine kinase 2 in pressure/stretch-induced signaling mechanisms in the vascular wall. Using two different knockout mouse models, we uncovered a novel role of microRNAs in the pressure-induced myogenic response. We demonstrated that global deletion of smooth muscle-specific microRNAs causes a loss of pressure-induced contraction and that this likely involves diminished calcium...
Vascular smooth muscle cell (VSMC) migration and proliferation are critical events in vascular proli...
OBJECTIVE: Regulation of vascular smooth muscle (VSM) proliferation and contractile differentiation ...
As the world population is pushing toward 8 billion, cardiovascular diseases (CVD) remain the leadin...
Smooth muscle cells residing in the blood vessel media are constantly exposed to mechanical forces e...
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...
The phenotype of smooth muscle cells is regulated by multiple environmental factors including mechan...
Stretch is essential for maintaining the contractile phenotype of vascular smooth muscle cells, and ...
Stretch of the vascular wall is an important stimulus to maintain smooth muscle contractile differen...
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...
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...
Stretch of vascular smooth muscle stimulates growth and proliferation as well as contraction and exp...
Vascular smooth muscle cell (VSMC) migration and proliferation are critical events in vascular proli...
OBJECTIVE: Regulation of vascular smooth muscle (VSM) proliferation and contractile differentiation ...
As the world population is pushing toward 8 billion, cardiovascular diseases (CVD) remain the leadin...
Smooth muscle cells residing in the blood vessel media are constantly exposed to mechanical forces e...
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...
The phenotype of smooth muscle cells is regulated by multiple environmental factors including mechan...
Stretch is essential for maintaining the contractile phenotype of vascular smooth muscle cells, and ...
Stretch of the vascular wall is an important stimulus to maintain smooth muscle contractile differen...
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...
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...
Stretch of vascular smooth muscle stimulates growth and proliferation as well as contraction and exp...
Vascular smooth muscle cell (VSMC) migration and proliferation are critical events in vascular proli...
OBJECTIVE: Regulation of vascular smooth muscle (VSM) proliferation and contractile differentiation ...
As the world population is pushing toward 8 billion, cardiovascular diseases (CVD) remain the leadin...