Thus far, understanding how the confined cellular environment affects the lifetime of bonds, as well as the extraction of complexation rates, has been a major challenge in studies of cell adhesion. Based on a theoretical description of the growth curves of adhesion domains, we present a new (to our knowledge) method to measure the association rate kon of ligand-receptor pairs incorporated into lipid membranes. As a proof of principle, we apply this method to several systems. We find that the kon for the interaction of biotin with neutravidin is larger than that for integrin binding to RGD or sialyl Lewisx to E-selectin. Furthermore, we find kon to be enhanced by membrane fluctuations that increase the probability for encounters between the ...
AbstractWe report the first measurement of the kinetics of adhesion of a single giant vesicle contro...
Cell adhesion involved in biological processes such as cell migration, immune responses, and cancer ...
Cell adhesion involved in biological processes such as cell migration, immune responses, and cancer ...
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,...
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 ...
International audienceThe efficiency of many cell-surface receptors is dependent on the rate of bind...
International audienceThe efficiency of many cell-surface receptors is dependent on the rate of bind...
International audienceThe efficiency of many cell-surface receptors is dependent on the rate of bind...
AbstractThe binding properties of biomolecules play a crucial role in many biological phenomena, esp...
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 ...
Cell adhesion involved in biological processes such as cell migration, immune responses, and cancer ...
AbstractWe report the first measurement of the kinetics of adhesion of a single giant vesicle contro...
Cell adhesion involved in biological processes such as cell migration, immune responses, and cancer ...
Cell adhesion involved in biological processes such as cell migration, immune responses, and cancer ...
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,...
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 ...
International audienceThe efficiency of many cell-surface receptors is dependent on the rate of bind...
International audienceThe efficiency of many cell-surface receptors is dependent on the rate of bind...
International audienceThe efficiency of many cell-surface receptors is dependent on the rate of bind...
AbstractThe binding properties of biomolecules play a crucial role in many biological phenomena, esp...
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 ...
Cell adhesion involved in biological processes such as cell migration, immune responses, and cancer ...
AbstractWe report the first measurement of the kinetics of adhesion of a single giant vesicle contro...
Cell adhesion involved in biological processes such as cell migration, immune responses, and cancer ...
Cell adhesion involved in biological processes such as cell migration, immune responses, and cancer ...