RATIONALE: Blood flow-induced shear stress controls endothelial cell (EC) physiology during atherosclerosis via transcriptional mechanisms that are incompletely understood. The mechanosensitive transcription factor TWIST is expressed during embryogenesis, but its role in EC responses to shear stress and focal atherosclerosis is unknown.OBJECTIVE: To investigate whether TWIST regulates endothelial responses to shear stress during vascular dysfunction and atherosclerosis and compare TWIST function in vascular development and disease.METHODS AND RESULTS: The expression and function of TWIST1 was studied in EC in both developing vasculature and during the initiation of atherosclerosis. In zebrafish, twist was expressed in early embryonic vascul...
AbstractDuring embryogenesis the heart valves develop from undifferentiated mesenchymal endocardial ...
Endothelial cells (ECs) play an important role in the pathogenesis of cardiovascular disease, especi...
Endothelial cells (ECs) play an important role in the pathogenesis of cardiovascular disease, especi...
RATIONALE: Blood flow-induced shear stress controls endothelial cell (EC) physiology during atherosc...
RATIONALE: Blood flow-induced shear stress controls endothelial cell (EC) physiology during atherosc...
RATIONALE: Blood flow-induced shear stress controls endothelial cell (EC) physiology during atherosc...
textabstractRationale: Blood flow-induced shear stress controls endothelial cell (EC) physiology dur...
Rationale: Blood flow–induced shear stress controls endothelial cell (EC) physiology during atherosc...
RATIONALE: Blood flow-induced shear stress controls endothelial cell (EC) physiology during atherosc...
Rationale: Blood flow–induced shear stress controls endothelial cell (EC) physiology during atherosc...
Rationale: Blood flow-induced shear stress controls endothelial cell (EC) physiology during atherosc...
RATIONALE: Blood flow-induced shear stress controls endothelial cell (EC) physiology during atherosc...
Blood flow-induced shear stress controls endothelial cell (EC) physiology during atherosclerosis via...
Blood flow-induced shear stress controls endothelial cell (EC) physiology during atherosclerosis via...
The majority of cancer mortalities are caused by aggressive metastases. During metastasis, carcinoma...
AbstractDuring embryogenesis the heart valves develop from undifferentiated mesenchymal endocardial ...
Endothelial cells (ECs) play an important role in the pathogenesis of cardiovascular disease, especi...
Endothelial cells (ECs) play an important role in the pathogenesis of cardiovascular disease, especi...
RATIONALE: Blood flow-induced shear stress controls endothelial cell (EC) physiology during atherosc...
RATIONALE: Blood flow-induced shear stress controls endothelial cell (EC) physiology during atherosc...
RATIONALE: Blood flow-induced shear stress controls endothelial cell (EC) physiology during atherosc...
textabstractRationale: Blood flow-induced shear stress controls endothelial cell (EC) physiology dur...
Rationale: Blood flow–induced shear stress controls endothelial cell (EC) physiology during atherosc...
RATIONALE: Blood flow-induced shear stress controls endothelial cell (EC) physiology during atherosc...
Rationale: Blood flow–induced shear stress controls endothelial cell (EC) physiology during atherosc...
Rationale: Blood flow-induced shear stress controls endothelial cell (EC) physiology during atherosc...
RATIONALE: Blood flow-induced shear stress controls endothelial cell (EC) physiology during atherosc...
Blood flow-induced shear stress controls endothelial cell (EC) physiology during atherosclerosis via...
Blood flow-induced shear stress controls endothelial cell (EC) physiology during atherosclerosis via...
The majority of cancer mortalities are caused by aggressive metastases. During metastasis, carcinoma...
AbstractDuring embryogenesis the heart valves develop from undifferentiated mesenchymal endocardial ...
Endothelial cells (ECs) play an important role in the pathogenesis of cardiovascular disease, especi...
Endothelial cells (ECs) play an important role in the pathogenesis of cardiovascular disease, especi...