AbstractThe vessel wall experiences progressive stiffening with age and the development of cardiovascular disease, which alters the micromechanical environment experienced by resident vascular smooth muscle cells (VSMCs). In vitro studies have shown that VSMCs are sensitive to substrate stiffness, but the exact molecular mechanisms of their response to stiffness remains unknown. Studies have also shown that cell-cell interactions can affect mechanotransduction at the cell-substrate interface. Using flexible substrates, we show that the expression of proteins associated with cell-matrix adhesion and cytoskeletal tension is regulated by substrate stiffness, and that an increase in cell density selectively attenuates some of these effects. We ...
Endothelial cells lining blood vessels are continuously exposed to biophysical cues that regulate th...
The vascular endothelium is subject to diverse mechanical cues that regulate vascular endothelial ba...
The vascular endothelium is subject to diverse mechanical cues that regulate vascular endothelial ba...
AbstractThe vessel wall experiences progressive stiffening with age and the development of cardiovas...
Thesis (Ph.D.)--Boston UniversityThe operation of the cardiovascular system is inherently mechanical...
Vascular smooth muscle cells (VSMCs) are the predominant cell type in the arterial wall and normally...
Vascular smooth muscle cells (VSMCs) are the predominant cell type in the arterial wall and normally...
AbstractSubstrate stiffness is emerging as an important physical factor in the response of many cell...
Vascular smooth muscle cells are in a constant state of flux between their two primary phenotypes, c...
AbstractThe role of matrix mechanics on cell behavior is under intense investigation. Cells exert co...
AbstractMechanical compliance is emerging as an important environmental cue that can influence certa...
The vascular endothelium is subject to diverse mechanical cues that regulate vascular endothelial ba...
Cytoskeletal tension plays an important role in numerous biological functions of adherent cells, inc...
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...
Endothelial cells lining blood vessels are continuously exposed to biophysical cues that regulate th...
The vascular endothelium is subject to diverse mechanical cues that regulate vascular endothelial ba...
The vascular endothelium is subject to diverse mechanical cues that regulate vascular endothelial ba...
AbstractThe vessel wall experiences progressive stiffening with age and the development of cardiovas...
Thesis (Ph.D.)--Boston UniversityThe operation of the cardiovascular system is inherently mechanical...
Vascular smooth muscle cells (VSMCs) are the predominant cell type in the arterial wall and normally...
Vascular smooth muscle cells (VSMCs) are the predominant cell type in the arterial wall and normally...
AbstractSubstrate stiffness is emerging as an important physical factor in the response of many cell...
Vascular smooth muscle cells are in a constant state of flux between their two primary phenotypes, c...
AbstractThe role of matrix mechanics on cell behavior is under intense investigation. Cells exert co...
AbstractMechanical compliance is emerging as an important environmental cue that can influence certa...
The vascular endothelium is subject to diverse mechanical cues that regulate vascular endothelial ba...
Cytoskeletal tension plays an important role in numerous biological functions of adherent cells, inc...
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...
Endothelial cells lining blood vessels are continuously exposed to biophysical cues that regulate th...
The vascular endothelium is subject to diverse mechanical cues that regulate vascular endothelial ba...
The vascular endothelium is subject to diverse mechanical cues that regulate vascular endothelial ba...