Endothelial cells lining blood vessels are continuously exposed to biophysical cues that regulate their function in health and disease. As we age, blood vessels lose their elasticity and become stiffer. Vessel stiffness alters the mechanical forces that endothelial cells experience. Despite ample evidence on the contribution of endothelial cells to vessel stiffness, less is known about how vessel stiffness affects endothelial cells. In this study, we developed a versatile model to study the cooperative effect of substrate stiffness and cyclic stretch on human aortic endothelial cells. We cultured endothelial cells on elastomeric wells covered with fibronectin-coated polyacrylamide gel. Varying the concentrations of acrylamide and bis-acryla...
“Correlation between cell morphology, tractions and motility of endothelial cells on compliant subst...
AbstractArterial hemodynamic shear stress and blood vessel stiffening both significantly influence t...
“TRACTIONS, MORPHOLOGY AND MOTILITY DYNAMICS IN ENDOTHELIAL CELLS ON COMPLIANT SUBSTRATES” A. Izquie...
Endothelial cells lining blood vessels are continuously exposed to biophysical cues that regulate th...
Endothelial cells lining blood vessels are continuously exposed to biophysical cues that regulate th...
Introduction: Substrate stiffness regulates cellular behavior as cells experience different stiffnes...
Arterial stiffness, which increases with aging and hypertension, is an independent cardiovascular ri...
Tissue assembly is a fundamental biological process that arises from complex cell-cell and cell-extr...
Blood and lymphatic vessels are lined by endothelial cells which constantly interact with their lumi...
Blood and lymphatic vessels are lined by endothelial cells which constantly interact with their lumi...
In situ vascular tissue engineering (TE) aims at regenerating vessels using implanted synthetic scaf...
In situ vascular tissue engineering (TE) aims at regenerating vessels using implanted synthetic scaf...
The role of vascular endothelium in the tissue- and body-homeostasis is beyond nutrient and oxygen t...
In situ vascular tissue engineering (TE) aims at regenerating vessels using implanted synthetic scaf...
In situ vascular tissue engineering (TE) aims at regenerating vessels using implanted synthetic scaf...
“Correlation between cell morphology, tractions and motility of endothelial cells on compliant subst...
AbstractArterial hemodynamic shear stress and blood vessel stiffening both significantly influence t...
“TRACTIONS, MORPHOLOGY AND MOTILITY DYNAMICS IN ENDOTHELIAL CELLS ON COMPLIANT SUBSTRATES” A. Izquie...
Endothelial cells lining blood vessels are continuously exposed to biophysical cues that regulate th...
Endothelial cells lining blood vessels are continuously exposed to biophysical cues that regulate th...
Introduction: Substrate stiffness regulates cellular behavior as cells experience different stiffnes...
Arterial stiffness, which increases with aging and hypertension, is an independent cardiovascular ri...
Tissue assembly is a fundamental biological process that arises from complex cell-cell and cell-extr...
Blood and lymphatic vessels are lined by endothelial cells which constantly interact with their lumi...
Blood and lymphatic vessels are lined by endothelial cells which constantly interact with their lumi...
In situ vascular tissue engineering (TE) aims at regenerating vessels using implanted synthetic scaf...
In situ vascular tissue engineering (TE) aims at regenerating vessels using implanted synthetic scaf...
The role of vascular endothelium in the tissue- and body-homeostasis is beyond nutrient and oxygen t...
In situ vascular tissue engineering (TE) aims at regenerating vessels using implanted synthetic scaf...
In situ vascular tissue engineering (TE) aims at regenerating vessels using implanted synthetic scaf...
“Correlation between cell morphology, tractions and motility of endothelial cells on compliant subst...
AbstractArterial hemodynamic shear stress and blood vessel stiffening both significantly influence t...
“TRACTIONS, MORPHOLOGY AND MOTILITY DYNAMICS IN ENDOTHELIAL CELLS ON COMPLIANT SUBSTRATES” A. Izquie...