Hemodynamic shear stress is intimately linked with endothelial metabolic effects, regulating key mechanisms in endothelial function, homeostasis, and repair. In-vivo modulation of shear stress signaling pathways in the zebrafish model allows for identification of mechanisms with potential therapeutic implications. The following studies combine in-vivo zebrafish models with in-vitro shear stress studies to characterize the mechanisms whereby shear stress regulates vascular development and repair. We investigated shear stress-modulated genes via microarray, and identified Angiopoietin-2 (Ang-2), a well known regulator of angiogenesis and vascular development, as a potential target for further mechanistic study. Oscillatory shear stress (OS...
The zebrafish is an excellent animal model to study the formation of the vertebrate vascular network...
Aims: Hemodynamic shear stress participates in maintaining vascular redox status. Elucidating flow-m...
The zebrafish is an excellent animal model to study the formation of the vertebrate vascular network...
ObjectiveFluid shear stress intimately regulates vasculogenesis and endothelial homeostasis. The can...
OBJECTIVE: Atherosclerosis is initiated at branches and bends of arteries exposed to disturbed blood...
Hemodynamic shear force is an important determinant of cardiovascular function and development. Whil...
Hemodynamic shear force is an important determinant of cardiovascular function and development. Whil...
OBJECTIVE: Atherosclerosis is initiated at branches and bends of arteries exposed to disturbed blood...
Physiological functions of vascular endothelial cells (ECs) vary depending on wall shear stress (WSS...
Hemodynamic shear forces are intimately linked with cardiac development, during which trabeculae for...
Hemodynamic shear forces are intimately linked with cardiac development, during which trabeculae for...
Wall shear stress (WSS) contributes to the mechanotransduction underlying microvascular development ...
Endothelial cells (ECs) play an important role in the pathogenesis of cardiovascular disease, especi...
AbstractStriking homology between signaling molecules in zebrafish and humans suggests that compound...
Endothelial cells (ECs) play an important role in the pathogenesis of cardiovascular disease, especi...
The zebrafish is an excellent animal model to study the formation of the vertebrate vascular network...
Aims: Hemodynamic shear stress participates in maintaining vascular redox status. Elucidating flow-m...
The zebrafish is an excellent animal model to study the formation of the vertebrate vascular network...
ObjectiveFluid shear stress intimately regulates vasculogenesis and endothelial homeostasis. The can...
OBJECTIVE: Atherosclerosis is initiated at branches and bends of arteries exposed to disturbed blood...
Hemodynamic shear force is an important determinant of cardiovascular function and development. Whil...
Hemodynamic shear force is an important determinant of cardiovascular function and development. Whil...
OBJECTIVE: Atherosclerosis is initiated at branches and bends of arteries exposed to disturbed blood...
Physiological functions of vascular endothelial cells (ECs) vary depending on wall shear stress (WSS...
Hemodynamic shear forces are intimately linked with cardiac development, during which trabeculae for...
Hemodynamic shear forces are intimately linked with cardiac development, during which trabeculae for...
Wall shear stress (WSS) contributes to the mechanotransduction underlying microvascular development ...
Endothelial cells (ECs) play an important role in the pathogenesis of cardiovascular disease, especi...
AbstractStriking homology between signaling molecules in zebrafish and humans suggests that compound...
Endothelial cells (ECs) play an important role in the pathogenesis of cardiovascular disease, especi...
The zebrafish is an excellent animal model to study the formation of the vertebrate vascular network...
Aims: Hemodynamic shear stress participates in maintaining vascular redox status. Elucidating flow-m...
The zebrafish is an excellent animal model to study the formation of the vertebrate vascular network...