In atherosclerosis, plaques preferentially develop in arterial regions of disturbed blood flow (d-flow), which alters endothelial gene expression and function. Here, we determined that d-flow regulates genome-wide DNA methylation patterns in a DNA methyltransferase–dependent (DNMT-dependent) manner. Induction of d-flow by partial carotid ligation surgery in a murine model induced DNMT1 in arterial endothelium. In cultured endothelial cells, DNMT1 was enhanced by oscillatory shear stress (OS), and reduction of DNMT with either the inhibitor 5-aza-2′-deoxycytidine (5Aza) or siRNA markedly reduced OS-induced endothelial inflammation. Moreover, administration of 5Aza reduced lesion formation in 2 mouse models of atherosclerosis. Using both re...
Atherosclerosis is a chronic arterial disease which impacts systemically the function of organs and ...
Background: Glycemic control is a strong predictor of long-term cardiovascular risk in patients with...
Tumor angiogenesis requires intricate regulation of gene expression in endothelial cells. We recentl...
There is increasing evidence that epigenetic mechanisms such as changes in DNA methylation and histo...
Atherosclerosis is an inflammatory disease of the arterial walls and is the major cause of heart att...
The earliest atherosclerotic lesions preferentially develop in arterial regions experienced disturbe...
Epigenetic mechanisms, such as DNA methylation and histone modifications, constitute one way for a c...
Endothelial cells (ECs) are professional sensors of shear stress (SS), the frictional force of blood...
Atherosclerosis is a disease in which lipid-laden plaques are developed inside the vessel walls of a...
Shear stress,the tangential component of the hemodynamic forces acting on the vascular wall,has been...
The mechanisms which control the gene expression profile of a particular cell type are critical for ...
Atherosclerosis is a disease in which lipid-laden plaques are developed inside the vessel walls of a...
Background: Atherosclerosis is a heterogeneously distributed disease of arteries in which the endoth...
Endothelial cells covering the inner surface of blood vessels are constantly exposed to shear stress...
Background: Atherosclerosis severity-independent alterations in DNA methylation, a reversible and hi...
Atherosclerosis is a chronic arterial disease which impacts systemically the function of organs and ...
Background: Glycemic control is a strong predictor of long-term cardiovascular risk in patients with...
Tumor angiogenesis requires intricate regulation of gene expression in endothelial cells. We recentl...
There is increasing evidence that epigenetic mechanisms such as changes in DNA methylation and histo...
Atherosclerosis is an inflammatory disease of the arterial walls and is the major cause of heart att...
The earliest atherosclerotic lesions preferentially develop in arterial regions experienced disturbe...
Epigenetic mechanisms, such as DNA methylation and histone modifications, constitute one way for a c...
Endothelial cells (ECs) are professional sensors of shear stress (SS), the frictional force of blood...
Atherosclerosis is a disease in which lipid-laden plaques are developed inside the vessel walls of a...
Shear stress,the tangential component of the hemodynamic forces acting on the vascular wall,has been...
The mechanisms which control the gene expression profile of a particular cell type are critical for ...
Atherosclerosis is a disease in which lipid-laden plaques are developed inside the vessel walls of a...
Background: Atherosclerosis is a heterogeneously distributed disease of arteries in which the endoth...
Endothelial cells covering the inner surface of blood vessels are constantly exposed to shear stress...
Background: Atherosclerosis severity-independent alterations in DNA methylation, a reversible and hi...
Atherosclerosis is a chronic arterial disease which impacts systemically the function of organs and ...
Background: Glycemic control is a strong predictor of long-term cardiovascular risk in patients with...
Tumor angiogenesis requires intricate regulation of gene expression in endothelial cells. We recentl...