Endothelial cells covering the inner surface of blood vessels are constantly exposed to shear stresses. Such hemodynamic shear stress influences vascular functions, and any endothelial dysfunction can lead to the progression of cardiovascular diseases, such as atherosclerosis. Atherosclerotic plaque formation in the endothelium is shown to be site-specific: disturbed flow regions at lesser curvature of the aortic arch and branched points are sites that are more susceptible to plaque formation, whereas steady flow regions at greater curvature and straight parts are more atheroprotective and maintain vascular homeostasis. Previous researches have extensively studied the various biochemical pathways implicated in atherosclerosis. Recently, in...
Hypercholesterolemia, homocysteine, oxidative stress, and hyperglycemia have been recognized as the ...
Atherosclerosis is a disease in which lipid-laden plaques are developed inside the vessel walls of a...
Endothelial cells (ECs) lining blood vessels are exposed to mechanical forces, such as shear stress....
Endothelial cells covering the inner surface of blood vessels are constantly exposed to shear stress...
[[abstract]]Vascular endothelial cells (ECs) are constantly exposed to hemodynamic forces, including...
[[abstract]]BACKGROUND: Endothelial cell (EC) dysfunctions, including turnover enrichment, gap junct...
[[abstract]]Vascular endothelial cells (ECs) are constantly exposed to hemodynamic forces, ...
Objective- The topographical distribution of atherosclerosis in vasculature underscores the importan...
Atherosclerosis is an inflammatory disease of the arterial walls and is the major cause of heart att...
There is increasing evidence that epigenetic mechanisms such as changes in DNA methylation and histo...
[[abstract]]Vascular endothelial cells (ECs) and smooth muscle cells (VSMCs) are constantly exposed ...
Epigenetic mechanisms, such as DNA methylation and histone modifications, constitute one way for a c...
[[abstract]]Shear stress and cyclic stretch are mechanical forces on the vessel wall exerted by bloo...
Atherosclerotic cardiovascular disease is the top cause of mortality worldwide and has imposed a mul...
Endothelial cell morphology and gene expression are driven by shear stress. Disturbed flow causes co...
Hypercholesterolemia, homocysteine, oxidative stress, and hyperglycemia have been recognized as the ...
Atherosclerosis is a disease in which lipid-laden plaques are developed inside the vessel walls of a...
Endothelial cells (ECs) lining blood vessels are exposed to mechanical forces, such as shear stress....
Endothelial cells covering the inner surface of blood vessels are constantly exposed to shear stress...
[[abstract]]Vascular endothelial cells (ECs) are constantly exposed to hemodynamic forces, including...
[[abstract]]BACKGROUND: Endothelial cell (EC) dysfunctions, including turnover enrichment, gap junct...
[[abstract]]Vascular endothelial cells (ECs) are constantly exposed to hemodynamic forces, ...
Objective- The topographical distribution of atherosclerosis in vasculature underscores the importan...
Atherosclerosis is an inflammatory disease of the arterial walls and is the major cause of heart att...
There is increasing evidence that epigenetic mechanisms such as changes in DNA methylation and histo...
[[abstract]]Vascular endothelial cells (ECs) and smooth muscle cells (VSMCs) are constantly exposed ...
Epigenetic mechanisms, such as DNA methylation and histone modifications, constitute one way for a c...
[[abstract]]Shear stress and cyclic stretch are mechanical forces on the vessel wall exerted by bloo...
Atherosclerotic cardiovascular disease is the top cause of mortality worldwide and has imposed a mul...
Endothelial cell morphology and gene expression are driven by shear stress. Disturbed flow causes co...
Hypercholesterolemia, homocysteine, oxidative stress, and hyperglycemia have been recognized as the ...
Atherosclerosis is a disease in which lipid-laden plaques are developed inside the vessel walls of a...
Endothelial cells (ECs) lining blood vessels are exposed to mechanical forces, such as shear stress....