International audienceWe recently proposed a straightforward fluorescence microscopy technique to study adhesion of Giant Unilamellar Vesicles. This technique is based on dual observations which combine epi-fluorescence microscopy and total internal reflection fluorescence (TIRF) microscopy: TIRF images are normalized by epi-fluorescence ones. By this way, it is possible to map the membrane/substrate separation distance with a nanometric resolution, typically ~ 20 nm, with a maximal working range of 300–400 nm. The purpose of this paper is to demonstrate that this technique is useful to quantify vesicle adhesion from ultra-weak to strong membrane–surface interactions. Thus, we have examined unspecific and specific adhesion conditions. Conce...
A more thorough understanding of cell-surface interactions is needed to gain further insight into ho...
A more thorough understanding of cell-surface interactions is needed to gain further insight into ho...
Lipid vesicles immobilized via molecular linkers at a solid support represent a convenient platform ...
L’objectif de mon travail de thèse a été de caractériser l’adhésion de vésicules géantes lipidiques ...
AbstractWe introduce an experimental setup for modulating adhesion of giant unilamellar vesicles to ...
International audienceTotal Internal Reflection Fluorescence (TIRF) microscopy is a widespread techn...
Cell adhesion and function depend upon the formation of adhesive contacts between the cell and subst...
International audienceWe present a simple modification of a standard total internal reflection fluor...
We introduce an experimental setup for modulating adhesion of giant unilamellar vesicles to a planar...
International audienceWe propose an improved version of variable-angle total internal reflection flu...
International audienceWe propose a new strategy to evaluate adhesion strength at the single cell lev...
We introduce an experimental setup for modulating adhesion of giant unilamellar vesicles to a planar...
We study the role of the interplay of specific and universal forces for the adhesion of giant vesicl...
AbstractWe introduce an experimental setup for modulating adhesion of giant unilamellar vesicles to ...
Understanding how cells interact with surfaces has been considerably facilitated by innovative super...
A more thorough understanding of cell-surface interactions is needed to gain further insight into ho...
A more thorough understanding of cell-surface interactions is needed to gain further insight into ho...
Lipid vesicles immobilized via molecular linkers at a solid support represent a convenient platform ...
L’objectif de mon travail de thèse a été de caractériser l’adhésion de vésicules géantes lipidiques ...
AbstractWe introduce an experimental setup for modulating adhesion of giant unilamellar vesicles to ...
International audienceTotal Internal Reflection Fluorescence (TIRF) microscopy is a widespread techn...
Cell adhesion and function depend upon the formation of adhesive contacts between the cell and subst...
International audienceWe present a simple modification of a standard total internal reflection fluor...
We introduce an experimental setup for modulating adhesion of giant unilamellar vesicles to a planar...
International audienceWe propose an improved version of variable-angle total internal reflection flu...
International audienceWe propose a new strategy to evaluate adhesion strength at the single cell lev...
We introduce an experimental setup for modulating adhesion of giant unilamellar vesicles to a planar...
We study the role of the interplay of specific and universal forces for the adhesion of giant vesicl...
AbstractWe introduce an experimental setup for modulating adhesion of giant unilamellar vesicles to ...
Understanding how cells interact with surfaces has been considerably facilitated by innovative super...
A more thorough understanding of cell-surface interactions is needed to gain further insight into ho...
A more thorough understanding of cell-surface interactions is needed to gain further insight into ho...
Lipid vesicles immobilized via molecular linkers at a solid support represent a convenient platform ...