AbstractThe mechanical properties of the living cell are intimately related to cell signaling biology through cytoskeletal tension. The tension borne by the cytoskeleton (CSK) is in part generated internally by the actomyosin machinery and externally by stretch. Here we studied how cytoskeletal tension is modified during stretch and the tensional changes undergone by the sites of cell-matrix interaction. To this end we developed a novel technique to map cell-matrix stresses during application of stretch. We found that cell-matrix stresses increased with imposition of stretch but dropped below baseline levels on stretch release. Inhibition of the actomyosin machinery resulted in a larger relative increase in CSK tension with stretch and in a...
Human mesenchymal stem cells (hMSCs) are therapeutically useful cells that are typically expanded in...
We report a theoretical study on the cyclic stretch-induced reorientation of spindle-shaped cells. S...
Characterizing how cells in three-dimensional (3D) environments or natural tissues respond to biophy...
ABSTRACT The mechanical properties of the living cell are intimately related to cell signaling biolo...
The mechanical properties of the living cell are intimately related to cell signaling biology throug...
AbstractThe mechanical properties of the living cell are intimately related to cell signaling biolog...
Cells within tissues are subjected to mechanical forces caused by extracellular matrix deformation. ...
BACKGROUND: Cells within tissues are subjected to mechanical forces caused by extracellular matrix d...
<div><p>The actin cytoskeleton plays a crucial role for the spreading of cells, but is also a key el...
The actin cytoskeleton plays a crucial role for the spreading of cells, but is also a key element fo...
The actin cytoskeleton plays a crucial role for the spreading of cells, but is also a key element fo...
International audienceDetection and conversion of mechanical forces into biochemical signals control...
Cell structure depends on both matrix strain and stiffness, but their interactive effects are poorly...
IntroductionMechanical forces regulate many facets of cell and tissue biology. Studying the effects ...
The ability of cells to sense and respond to the mechanical properties of their environments is fund...
Human mesenchymal stem cells (hMSCs) are therapeutically useful cells that are typically expanded in...
We report a theoretical study on the cyclic stretch-induced reorientation of spindle-shaped cells. S...
Characterizing how cells in three-dimensional (3D) environments or natural tissues respond to biophy...
ABSTRACT The mechanical properties of the living cell are intimately related to cell signaling biolo...
The mechanical properties of the living cell are intimately related to cell signaling biology throug...
AbstractThe mechanical properties of the living cell are intimately related to cell signaling biolog...
Cells within tissues are subjected to mechanical forces caused by extracellular matrix deformation. ...
BACKGROUND: Cells within tissues are subjected to mechanical forces caused by extracellular matrix d...
<div><p>The actin cytoskeleton plays a crucial role for the spreading of cells, but is also a key el...
The actin cytoskeleton plays a crucial role for the spreading of cells, but is also a key element fo...
The actin cytoskeleton plays a crucial role for the spreading of cells, but is also a key element fo...
International audienceDetection and conversion of mechanical forces into biochemical signals control...
Cell structure depends on both matrix strain and stiffness, but their interactive effects are poorly...
IntroductionMechanical forces regulate many facets of cell and tissue biology. Studying the effects ...
The ability of cells to sense and respond to the mechanical properties of their environments is fund...
Human mesenchymal stem cells (hMSCs) are therapeutically useful cells that are typically expanded in...
We report a theoretical study on the cyclic stretch-induced reorientation of spindle-shaped cells. S...
Characterizing how cells in three-dimensional (3D) environments or natural tissues respond to biophy...