The ability of cells to form tissues represents one of the most fundamental issues in biology. However, it is unclear what triggers cells to adhere to one another in tissues and to migrate once a piece of tissue is planted on culture surfaces. Using substrates of identical chemical composition but different flexibility, we show that this process is controlled by substrate rigidity: on stiff substrates, cells migrate away from one another and spread on surfaces, whereas on soft substrates they merge to form tissue-like structures. Similar behavior was observed not only with fibroblastic and epithelial cell lines but also explants from neonatal rat hearts. Cell compaction on soft substrates involves a combination of weakened adhesions to the ...
<p>Cell-substrate interactions influence various cellular processes such as morphology, motility, pr...
The mechanical micro-environment of cells and tissues influences key aspects of cell structure and f...
Cell migration is essential for many biological processes such as tissue morphogenesis, wound healin...
AbstractThe ability of cells to form tissues represents one of the most fundamental issues in biolog...
Cell migration plays a significant role in multicellular organisms, where it is involved in physiolo...
Directional cell locomotion is critical in many physiological processes, including morphogenesis, th...
AbstractDirectional cell locomotion is critical in many physiological processes, including morphogen...
The dependences of spreading and differentiation of stem cells plated on hydrogel and silicone gel s...
Responses of cells to mechanical properties of the adhesion substrate were examined by culturing nor...
International audienceCell migration plays a major role in many fundamental biological processes, su...
AbstractThe role of matrix mechanics on cell behavior is under intense investigation. Cells exert co...
<p>Mechanical properties of the extracellular environment provide important cues that regulate cell ...
Physical and mechanical cues of the cellular microenvironment affect cell behavior and fate via mech...
Extracellular mechanophysical signals from both static substrate cue and dynamic mechanical loading ...
Although two-dimensional cultures have been used extensively in cell biological research, most cells...
<p>Cell-substrate interactions influence various cellular processes such as morphology, motility, pr...
The mechanical micro-environment of cells and tissues influences key aspects of cell structure and f...
Cell migration is essential for many biological processes such as tissue morphogenesis, wound healin...
AbstractThe ability of cells to form tissues represents one of the most fundamental issues in biolog...
Cell migration plays a significant role in multicellular organisms, where it is involved in physiolo...
Directional cell locomotion is critical in many physiological processes, including morphogenesis, th...
AbstractDirectional cell locomotion is critical in many physiological processes, including morphogen...
The dependences of spreading and differentiation of stem cells plated on hydrogel and silicone gel s...
Responses of cells to mechanical properties of the adhesion substrate were examined by culturing nor...
International audienceCell migration plays a major role in many fundamental biological processes, su...
AbstractThe role of matrix mechanics on cell behavior is under intense investigation. Cells exert co...
<p>Mechanical properties of the extracellular environment provide important cues that regulate cell ...
Physical and mechanical cues of the cellular microenvironment affect cell behavior and fate via mech...
Extracellular mechanophysical signals from both static substrate cue and dynamic mechanical loading ...
Although two-dimensional cultures have been used extensively in cell biological research, most cells...
<p>Cell-substrate interactions influence various cellular processes such as morphology, motility, pr...
The mechanical micro-environment of cells and tissues influences key aspects of cell structure and f...
Cell migration is essential for many biological processes such as tissue morphogenesis, wound healin...