To understand the effects of a crystalline protein layer on bilayer properties, we studied the mechanical properties of avidin- and streptavidin-coated giant lipid bilayer vesicles. The giant vesicles (20-60 mum) are made from a mixture of SOPC and biotinylated phospholipids via electroformation. Using micropipet manipulation, we showed that the presence of a monomolecular layer of noncrystalline avidin on the vesicle surface increases the membrane bending rigidity but does not significantly alter the elastic area expansion modulus of the vesicle. When the vesicles were coated with streptavidin, the protein crystallizes on the bilayer surface, resulting in a rigid polycrystalline membrane. These vesicles display unique roughened spherical o...
Cholesterol plays a critical role in modulating the lipid membrane properties of biological and biom...
This thesis presents the design, development and application of several platforms through which to g...
The ease with which a cell membrane can bend and deform is important for a wide range of biological ...
Research on giant vesicles is becoming increasingly popular. Giant vesicles provide model biomembran...
Biomimetic and biological membranes consist of lipid-protein bilayers in their fluid state. Because ...
The mechanical properties of cell-sized giant unilamellar liposomes were studied by manipulating pol...
International audienceGiant vesicles obtained from phospholipids and copolymers can be exploited in ...
Giant unilamellar vesicles (GUVs) have sizes in the range of 10-100 μm, which defines their unique p...
Lipid bilayers form the basis of the membranes that serve as a barrier between a cell and its physio...
The goal of this work was to develop mechanical models of cells based on lipidic giant unilamellar v...
AbstractBilayers composed of phosphatidylcholine (PC), sphingomyelin (SM), and cholesterol (CHOL) ar...
We report the modification of the bending elastic modulus $k_{\rm c}$ of lipid bilayers (here DMPC) ...
Closed lipid bilayers in the form of giant unilamellar vesicles (GUVs) are commonly used membrane mo...
The work described here has focused on two types of supramolecular assemblies, supported lipid bilay...
The mechanical response of giant liposomes to compression between two parallel plates is investigate...
Cholesterol plays a critical role in modulating the lipid membrane properties of biological and biom...
This thesis presents the design, development and application of several platforms through which to g...
The ease with which a cell membrane can bend and deform is important for a wide range of biological ...
Research on giant vesicles is becoming increasingly popular. Giant vesicles provide model biomembran...
Biomimetic and biological membranes consist of lipid-protein bilayers in their fluid state. Because ...
The mechanical properties of cell-sized giant unilamellar liposomes were studied by manipulating pol...
International audienceGiant vesicles obtained from phospholipids and copolymers can be exploited in ...
Giant unilamellar vesicles (GUVs) have sizes in the range of 10-100 μm, which defines their unique p...
Lipid bilayers form the basis of the membranes that serve as a barrier between a cell and its physio...
The goal of this work was to develop mechanical models of cells based on lipidic giant unilamellar v...
AbstractBilayers composed of phosphatidylcholine (PC), sphingomyelin (SM), and cholesterol (CHOL) ar...
We report the modification of the bending elastic modulus $k_{\rm c}$ of lipid bilayers (here DMPC) ...
Closed lipid bilayers in the form of giant unilamellar vesicles (GUVs) are commonly used membrane mo...
The work described here has focused on two types of supramolecular assemblies, supported lipid bilay...
The mechanical response of giant liposomes to compression between two parallel plates is investigate...
Cholesterol plays a critical role in modulating the lipid membrane properties of biological and biom...
This thesis presents the design, development and application of several platforms through which to g...
The ease with which a cell membrane can bend and deform is important for a wide range of biological ...