AbstractWe report the first measurement of the kinetics of adhesion of a single giant vesicle controlled by the competition between membrane–substrate interaction mediated by ligand–receptor interaction, gravitation, and Helfrich repulsion. To model the cell–tissue interaction, we doped the vesicles with lipid-coupled polymers (mimicking the glycocalix) and the reconstituted ligands selectively recognized by αIIbβ3 integrin-mediating specific attraction forces. The integrin was grafted on glass substrates to act as a target cell. The adhesion of the vesicle membrane to the integrin-covered surface starts with the spontaneous formation of a small (∼200nm) domain of tight adhesion, which then gradually grows until the whole adhesion area is i...
Multivalent adhesive interactions mediated by a large number of ligands and receptors underpin many ...
AbstractThus far, understanding how the confined cellular environment affects the lifetime of bonds,...
AbstractThus far, understanding how the confined cellular environment affects the lifetime of bonds,...
AbstractWe report the first measurement of the kinetics of adhesion of a single giant vesicle contro...
We study the role of the interplay of specific and universal forces for the adhesion of giant vesicl...
We study the role of the interplay of specific and universal forces for the adhesion of giant vesicl...
International audienceThe binding properties of biomolecules play a crucial role in many biological ...
International audienceThe binding properties of biomolecules play a crucial role in many biological ...
International audienceThe binding properties of biomolecules play a crucial role in many biological ...
AbstractThe binding properties of biomolecules play a crucial role in many biological phenomena, esp...
AbstractA model system to study the control of cell adhesion by receptor-mediated specific forces, u...
Giant unilamellar vesicles (GUVs) adhering to supported bilayers were used as a model system to mimi...
Multivalent adhesive interactions mediated by a large number of ligands and receptors underpin many ...
AbstractA model system to study the control of cell adhesion by receptor-mediated specific forces, u...
Ligand/receptor multivalent interactions have been exploited to drive self-assembly of nanoparticles...
Multivalent adhesive interactions mediated by a large number of ligands and receptors underpin many ...
AbstractThus far, understanding how the confined cellular environment affects the lifetime of bonds,...
AbstractThus far, understanding how the confined cellular environment affects the lifetime of bonds,...
AbstractWe report the first measurement of the kinetics of adhesion of a single giant vesicle contro...
We study the role of the interplay of specific and universal forces for the adhesion of giant vesicl...
We study the role of the interplay of specific and universal forces for the adhesion of giant vesicl...
International audienceThe binding properties of biomolecules play a crucial role in many biological ...
International audienceThe binding properties of biomolecules play a crucial role in many biological ...
International audienceThe binding properties of biomolecules play a crucial role in many biological ...
AbstractThe binding properties of biomolecules play a crucial role in many biological phenomena, esp...
AbstractA model system to study the control of cell adhesion by receptor-mediated specific forces, u...
Giant unilamellar vesicles (GUVs) adhering to supported bilayers were used as a model system to mimi...
Multivalent adhesive interactions mediated by a large number of ligands and receptors underpin many ...
AbstractA model system to study the control of cell adhesion by receptor-mediated specific forces, u...
Ligand/receptor multivalent interactions have been exploited to drive self-assembly of nanoparticles...
Multivalent adhesive interactions mediated by a large number of ligands and receptors underpin many ...
AbstractThus far, understanding how the confined cellular environment affects the lifetime of bonds,...
AbstractThus far, understanding how the confined cellular environment affects the lifetime of bonds,...