International audienceMatrix rigidity sensing regulates a large variety of cellular processes and has important implications for tissue development and disease. However, how cells probe matrix rigidity, and hence respond to it, remains unclear. Here, we show that rigidity sensing and adaptation emerge naturally from actin cytoskeleton remodelling. Our in vitro experiments and theoretical modelling demonstrate a biphasic rheology of the actin cytoskeleton, which transitions from fluid on soft substrates to solid on stiffer ones. Furthermore, we find that increasing substrate stiffness correlates with the emergence of an orientational order in actin stress fibres, which exhibit an isotropic to nematic transition that we characterize quantitat...
A step stress deforming suspended cells causes a passive relaxation, due to a transiently cross-link...
Forces and the mechanical properties surrounding eukaryotic cells have been increasingly shown to pl...
Tissue rigidity regulates processes in development, cancer and wound healing. However, how cells det...
International audienceA general trait of living cells is their ability to exert contractile stresses...
Cells modulate themselves in response to the surrounding environment like substrate elasticity, exhi...
International audienceCell migration plays a major role in many fundamental biological processes, su...
Cells modulate themselves in response to the surrounding environment like substrate elasticity, exhi...
Cells modulate themselves in response to the surrounding environment like substrate elasticity, exhi...
A eukaryotic cell attaches and spreads on substrates, whether it is the extracellular matrix natural...
The ability of cells to sense and respond to the mechanical properties of their environments is fund...
Polarity is critical for development and tissue-specific function. However, the acquisition and main...
Molecular motor regulated active contractile force is key for cells sensing and responding to their ...
AbstractWe investigate the dynamic response of single cells to weak and local rigidities, applied at...
Numerous experimental studies have established that cells can sense the stiffness of underlying subs...
Numerous experimental studies have established that cells can sense the stiffness of underlying subs...
A step stress deforming suspended cells causes a passive relaxation, due to a transiently cross-link...
Forces and the mechanical properties surrounding eukaryotic cells have been increasingly shown to pl...
Tissue rigidity regulates processes in development, cancer and wound healing. However, how cells det...
International audienceA general trait of living cells is their ability to exert contractile stresses...
Cells modulate themselves in response to the surrounding environment like substrate elasticity, exhi...
International audienceCell migration plays a major role in many fundamental biological processes, su...
Cells modulate themselves in response to the surrounding environment like substrate elasticity, exhi...
Cells modulate themselves in response to the surrounding environment like substrate elasticity, exhi...
A eukaryotic cell attaches and spreads on substrates, whether it is the extracellular matrix natural...
The ability of cells to sense and respond to the mechanical properties of their environments is fund...
Polarity is critical for development and tissue-specific function. However, the acquisition and main...
Molecular motor regulated active contractile force is key for cells sensing and responding to their ...
AbstractWe investigate the dynamic response of single cells to weak and local rigidities, applied at...
Numerous experimental studies have established that cells can sense the stiffness of underlying subs...
Numerous experimental studies have established that cells can sense the stiffness of underlying subs...
A step stress deforming suspended cells causes a passive relaxation, due to a transiently cross-link...
Forces and the mechanical properties surrounding eukaryotic cells have been increasingly shown to pl...
Tissue rigidity regulates processes in development, cancer and wound healing. However, how cells det...