We introduce an experimental setup for modulating adhesion of giant unilamellar vesicles to a planar substrate. Adhesion is induced by the application of an external potential to a transparent indium tin oxide-coated electrode (the substrate), which enables single-vesicle studies. We demonstrate tunable and reversible adhesion of negatively charged vesicles. The adhesion energy at different potentials is calculated from the vesicle shape assessed with confocal microscopy. Two approaches for these estimates are employed: one based on the whole contour of the vesicle and a second based on the contact curvature of the membrane in the vicinity of the substrate. Both approaches agree well with each other and show that the adhering vesicles are i...
This thesis explores the effects of bilayer mechanics on the adhesion of biomimetic membranes and ve...
This thesis explores the effects of bilayer mechanics on the adhesion of biomimetic membranes and ve...
Biological membranes are weakly permeable to hydrophilic molecules and ions and electric pulses can ...
AbstractWe introduce an experimental setup for modulating adhesion of giant unilamellar vesicles to ...
We introduce an experimental setup for modulating adhesion of giant unilamellar vesicles to a planar...
AbstractWe introduce an experimental setup for modulating adhesion of giant unilamellar vesicles to ...
International audienceWe recently proposed a straightforward fluorescence microscopy technique to st...
Adhering vesicles with osmotically stabilized volume are studied with Monte Carlo simulations and op...
We study the role of the interplay of specific and universal forces for the adhesion of giant vesicl...
The adhesion of fluid vesicles at chemically structured substrates is studied theoretically via Mont...
Biological membranes are segmented into functional compartments of different length and time scales....
10 pages, 10 figuresWe characterize vesicle adhesion onto homogeneous substrates by means of a pertu...
AbstractCell or vesicle adhesion plays an essential role in a plethora of physiological activities. ...
We study the role of the interplay of specific and universal forces for the adhesion of giant vesicl...
This thesis explores the effects of bilayer mechanics on the adhesion of biomimetic membranes and ve...
This thesis explores the effects of bilayer mechanics on the adhesion of biomimetic membranes and ve...
This thesis explores the effects of bilayer mechanics on the adhesion of biomimetic membranes and ve...
Biological membranes are weakly permeable to hydrophilic molecules and ions and electric pulses can ...
AbstractWe introduce an experimental setup for modulating adhesion of giant unilamellar vesicles to ...
We introduce an experimental setup for modulating adhesion of giant unilamellar vesicles to a planar...
AbstractWe introduce an experimental setup for modulating adhesion of giant unilamellar vesicles to ...
International audienceWe recently proposed a straightforward fluorescence microscopy technique to st...
Adhering vesicles with osmotically stabilized volume are studied with Monte Carlo simulations and op...
We study the role of the interplay of specific and universal forces for the adhesion of giant vesicl...
The adhesion of fluid vesicles at chemically structured substrates is studied theoretically via Mont...
Biological membranes are segmented into functional compartments of different length and time scales....
10 pages, 10 figuresWe characterize vesicle adhesion onto homogeneous substrates by means of a pertu...
AbstractCell or vesicle adhesion plays an essential role in a plethora of physiological activities. ...
We study the role of the interplay of specific and universal forces for the adhesion of giant vesicl...
This thesis explores the effects of bilayer mechanics on the adhesion of biomimetic membranes and ve...
This thesis explores the effects of bilayer mechanics on the adhesion of biomimetic membranes and ve...
This thesis explores the effects of bilayer mechanics on the adhesion of biomimetic membranes and ve...
Biological membranes are weakly permeable to hydrophilic molecules and ions and electric pulses can ...