Vascular smooth muscle cells can perform both contractile and synthetic functions, which are associated with and characterised by changes in morphology, proliferation and migration rates, and the expression of different marker proteins. The resulting phenotypic diversity of smooth muscle cells appears to be a function of innate genetic programmes and environmental cues, which include biochemical factors, extracellular matrix components, and physical factors such as stretch and shear stress. Because of the diversity among smooth muscle cells, blood vessels attain the flexibility that is necessary to perform efficiently under different physiological and pathological conditions. In this review, we discuss recent literature demonstrating the ex...
As the world population is pushing toward 8 billion, cardiovascular diseases (CVD) remain the leadin...
Arteriogenesis is one of the primary physiological means by which the circulatory collateral system ...
Vascular smooth muscle cells (VSMCs) possess a remarkable capacity to change phenotype in response t...
Vascular smooth muscle cells can perform both contractile and synthetic functions, which are associa...
Vascular smooth muscle cells can perform both contractile and synthetic functions, which are associa...
Vascular smooth muscle cells can perform both contractile and synthetic functions, which are associa...
Vascular smooth muscle cells can perform both contractile and synthetic functions, which are associa...
Vascular smooth muscle cell (VSMC) differentiation is an essential component of vascular development...
In accordance with their function and embryological origin smooth muscle cells (SMC) express a multi...
Smooth muscle cells (SMCs) are a broad class of contractile cells that are found in a number of orga...
Smooth muscle cells (SMCs) possess remarkable phenotypic plasticity that allows rapid adaptation to ...
Smoothelin-A and -B have only been found in fully differentiated contractile smooth muscle cells. Th...
Smoothelin-A and -B have only been found in fully differentiated contractile smooth muscle cells. Th...
Abstract Smooth muscle cells (SMCs) possess remarkable phenotypic plasticity that allows rapid adapt...
Vascular smooth muscle cells (VSMCs) are the predominant cell type in the blood vessel wall and norm...
As the world population is pushing toward 8 billion, cardiovascular diseases (CVD) remain the leadin...
Arteriogenesis is one of the primary physiological means by which the circulatory collateral system ...
Vascular smooth muscle cells (VSMCs) possess a remarkable capacity to change phenotype in response t...
Vascular smooth muscle cells can perform both contractile and synthetic functions, which are associa...
Vascular smooth muscle cells can perform both contractile and synthetic functions, which are associa...
Vascular smooth muscle cells can perform both contractile and synthetic functions, which are associa...
Vascular smooth muscle cells can perform both contractile and synthetic functions, which are associa...
Vascular smooth muscle cell (VSMC) differentiation is an essential component of vascular development...
In accordance with their function and embryological origin smooth muscle cells (SMC) express a multi...
Smooth muscle cells (SMCs) are a broad class of contractile cells that are found in a number of orga...
Smooth muscle cells (SMCs) possess remarkable phenotypic plasticity that allows rapid adaptation to ...
Smoothelin-A and -B have only been found in fully differentiated contractile smooth muscle cells. Th...
Smoothelin-A and -B have only been found in fully differentiated contractile smooth muscle cells. Th...
Abstract Smooth muscle cells (SMCs) possess remarkable phenotypic plasticity that allows rapid adapt...
Vascular smooth muscle cells (VSMCs) are the predominant cell type in the blood vessel wall and norm...
As the world population is pushing toward 8 billion, cardiovascular diseases (CVD) remain the leadin...
Arteriogenesis is one of the primary physiological means by which the circulatory collateral system ...
Vascular smooth muscle cells (VSMCs) possess a remarkable capacity to change phenotype in response t...