In the lungs, vascular endothelial cells experience cyclic mechanical strain resulting from rhythmic breathing motions and intraluminal blood pressure. Mechanical stress creates evident physiological, morphological, biochemical, and gene expression changes in vascular endothelial cells. However, the exact mechanisms of the mechanical signal transduction into biological responses remain to be clarified. Besides, the level of mechanical stress is difficult to determine due to the complexity of the local distension patterns in the lungs and thus assumed to be the same as the one acting on the alveolar epithelium. Existing in vitro models used to investigate the effect of mechanical stretch on endothelial cells are usually limited to two-dimens...
The endothelial lining of the vasculature is exposed to a large variety of biochemical and hemodynam...
Exposure of endothelial cells to low and multidirectional blood flow is known to promote a pro-ather...
Atherosclerosis is an ever-increasing cause of morbidity in the western world. Current surgical trea...
In the lung, vascular endothelial cells experience cyclic mechanical strain resulting from rhythmic ...
In vivo, endothelial cells are constantly exposed to pulsatile shear and tensile stresses. The main ...
The role of vascular endothelium in the tissue- and body-homeostasis is beyond nutrient and oxygen t...
Most forms of tissue healing depend critically on revascularisation. In soft tissues and in vitro, m...
Engineering tools and techniques greatly expand the scope of biological studies, permitting investig...
Exposure of endothelial cells to low and multidirectional blood flow is known to promote a pro-ather...
Endothelial cells lining blood vessels are continuously exposed to biophysical cues that regulate th...
Vascular hypertrophy has been identified as an important process in the development of essential hyp...
\u3cp\u3eThe success of cardiovascular tissue engineering (TE) strategies largely depends on the mec...
The proposal of the role of mechanical forces as a localizing factor of atherosclerosis has led many...
The endothelial lining of the vasculature is exposed to a large variety of biochemical and hemodynam...
Exposure of endothelial cells to low and multidirectional blood flow is known to promote a pro-ather...
Atherosclerosis is an ever-increasing cause of morbidity in the western world. Current surgical trea...
In the lung, vascular endothelial cells experience cyclic mechanical strain resulting from rhythmic ...
In vivo, endothelial cells are constantly exposed to pulsatile shear and tensile stresses. The main ...
The role of vascular endothelium in the tissue- and body-homeostasis is beyond nutrient and oxygen t...
Most forms of tissue healing depend critically on revascularisation. In soft tissues and in vitro, m...
Engineering tools and techniques greatly expand the scope of biological studies, permitting investig...
Exposure of endothelial cells to low and multidirectional blood flow is known to promote a pro-ather...
Endothelial cells lining blood vessels are continuously exposed to biophysical cues that regulate th...
Vascular hypertrophy has been identified as an important process in the development of essential hyp...
\u3cp\u3eThe success of cardiovascular tissue engineering (TE) strategies largely depends on the mec...
The proposal of the role of mechanical forces as a localizing factor of atherosclerosis has led many...
The endothelial lining of the vasculature is exposed to a large variety of biochemical and hemodynam...
Exposure of endothelial cells to low and multidirectional blood flow is known to promote a pro-ather...
Atherosclerosis is an ever-increasing cause of morbidity in the western world. Current surgical trea...