AbstractMany cell types alter their morphology and gene expression profile when grown on chemically equivalent surfaces with different rigidities. One expectation of this change in morphology and composition is that the cell’s internal stiffness, governed by cytoskeletal assembly and production of internal stresses, will change as a function of substrate stiffness. Atomic force microscopy was used to measure the stiffness of fibroblasts grown on fibronectin-coated polyacrylamide gels of shear moduli varying between 500 and 40,000Pa. Indentation measurements show that the cells’ elastic moduli were equal to, or slightly lower than, those of their substrates for a range of soft gels and reached a saturating value at a substrate rigidity of 20...
A eukaryotic cell attaches and spreads on substrates, whether it is the extracellular matrix natural...
AbstractDuring wound healing and angiogenesis, fibrin serves as a provisional extracellular matrix. ...
aINTRODUCTION The mechanical properties of a cell’s microenvironment can have as great an impact on ...
AbstractMany cell types alter their morphology and gene expression profile when grown on chemically ...
ABSTRACT Many cell types alter their morphology and gene expression profile when grown on chemically...
Many cell types alter their morphology and gene expression profile when grown on chemically equivale...
AbstractCell types from many tissues respond to changes in substrate stiffness by actively remodelin...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
AbstractThe ability of cells to form tissues represents one of the most fundamental issues in biolog...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
AbstractTo function efficiently in the body, the biological cells must have the ability to sense the...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
A eukaryotic cell attaches and spreads on substrates, whether it is the extracellular matrix natural...
AbstractDuring wound healing and angiogenesis, fibrin serves as a provisional extracellular matrix. ...
aINTRODUCTION The mechanical properties of a cell’s microenvironment can have as great an impact on ...
AbstractMany cell types alter their morphology and gene expression profile when grown on chemically ...
ABSTRACT Many cell types alter their morphology and gene expression profile when grown on chemically...
Many cell types alter their morphology and gene expression profile when grown on chemically equivale...
AbstractCell types from many tissues respond to changes in substrate stiffness by actively remodelin...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
AbstractThe ability of cells to form tissues represents one of the most fundamental issues in biolog...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
AbstractTo function efficiently in the body, the biological cells must have the ability to sense the...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
A eukaryotic cell attaches and spreads on substrates, whether it is the extracellular matrix natural...
AbstractDuring wound healing and angiogenesis, fibrin serves as a provisional extracellular matrix. ...
aINTRODUCTION The mechanical properties of a cell’s microenvironment can have as great an impact on ...