AbstractCell adhesion mechanically couples cells to surfaces. The durability of individual bonds between the adhesive receptors and their ligands in the presence of forces determines the cellular adhesion strength. For adhesive receptors such as integrins, it is a common paradigm that the cell regulates its adhesion strength by altering the affinity state of the receptors. However, the probability distribution of rupture forces is dependent not only on the affinity of individual receptor-ligand bonds but also on the mechanical compliance of the cellular anchorage of the receptor. Hence, by altering the anchorage, the cell can regulate its adhesion strength without changing the affinity of the receptor. Here, we analyze the anchorage of the ...
Receptor-mediated cell adhesion is a central phenomenon in many physiological and biotechnological p...
International audienceCell adhesion is essentially mediated by specific interactions between membran...
In probing adhesion and cell mechanics by atomic force microscopy (AFM), the mechanical properties o...
AbstractCell adhesion mechanically couples cells to surfaces. The durability of individual bonds bet...
For many cell types, growth, differentiation, and motility are dependent on receptor-mediated adhesi...
We present a dynamical model for receptor-mediated adhesion of cells in a shear field of viscous flu...
AbstractExtracellular matrices determine cellular fate decisions through the regulation of intracell...
International audienceCell adhesion is essentially mediated by specific interactions between membran...
We report a new quantitative approach to investigate the effects of viscoelastic deformation on the ...
Cell adhesion regulates critical cellular functions in adherent cells. Yet, the fundamental mechanis...
AbstractComplementary to parameters established for cell-adhesion force curve analysis, we evaluated...
AbstractIn response to external stimuli, cells modulate their adhesive state by regulating the numbe...
AbstractComplementary to parameters established for cell-adhesion force curve analysis, we evaluated...
AbstractWe investigated the mechanical strength of adhesion and the dynamics of unbinding of red blo...
The strength of receptor-mediated cell adhesion is directly controlled by the mechanism of cohesive ...
Receptor-mediated cell adhesion is a central phenomenon in many physiological and biotechnological p...
International audienceCell adhesion is essentially mediated by specific interactions between membran...
In probing adhesion and cell mechanics by atomic force microscopy (AFM), the mechanical properties o...
AbstractCell adhesion mechanically couples cells to surfaces. The durability of individual bonds bet...
For many cell types, growth, differentiation, and motility are dependent on receptor-mediated adhesi...
We present a dynamical model for receptor-mediated adhesion of cells in a shear field of viscous flu...
AbstractExtracellular matrices determine cellular fate decisions through the regulation of intracell...
International audienceCell adhesion is essentially mediated by specific interactions between membran...
We report a new quantitative approach to investigate the effects of viscoelastic deformation on the ...
Cell adhesion regulates critical cellular functions in adherent cells. Yet, the fundamental mechanis...
AbstractComplementary to parameters established for cell-adhesion force curve analysis, we evaluated...
AbstractIn response to external stimuli, cells modulate their adhesive state by regulating the numbe...
AbstractComplementary to parameters established for cell-adhesion force curve analysis, we evaluated...
AbstractWe investigated the mechanical strength of adhesion and the dynamics of unbinding of red blo...
The strength of receptor-mediated cell adhesion is directly controlled by the mechanism of cohesive ...
Receptor-mediated cell adhesion is a central phenomenon in many physiological and biotechnological p...
International audienceCell adhesion is essentially mediated by specific interactions between membran...
In probing adhesion and cell mechanics by atomic force microscopy (AFM), the mechanical properties o...