Closed lipid bilayers in the form of giant unilamellar vesicles (GUVs) are commonly used membrane models. Various methods have been developed to prepare GUVs, however it is unknown if all approaches yield membranes with the same elastic, electric, and rheological properties. Here, we combine flickering spectroscopy and electrodefomation of GUVs to measure, at identical conditions, membrane capacitance, bending rigidity and shear surface viscosity of palmitoyloleoylphosphatidylcholine (POPC) membranes formed by several commonly used preparation methods: thin film hydration (spontaneous swelling), electroformation, gel-assisted swelling using poly(vinyl alcohol) (PVA) or agarose, and phase-transfer. We find relatively similar bending rigidity...
To understand the effects of a crystalline protein layer on bilayer properties, we studied the mecha...
International audienceResponsive giant lipid vesicles filled with aqueous PolyNipam sol (SFV) or gel...
This thesis presents the design, development and application of several platforms through which to g...
International audienceGiant Unilamellar Vesicles (GUV) are the most commonly used biomimetic membran...
Giant unilamellar vesicles (GUVs) have sizes in the range of 10-100 μm, which defines their unique p...
AbstractGiant unilamellar vesicles (GUVs) are presumably the current most popular biomimetic membran...
Viscosity is a key property of cell membranes that controls mobility of embedded proteins and membra...
The morphology and dynamics of lipid bilayers are related to their mechanical parameters such as the...
Research on giant vesicles is becoming increasingly popular. Giant vesicles provide model biomembran...
AbstractIn recent years, giant unilamellar vesicles (GUVs) have become objects of intense scrutiny b...
AbstractWe report the properties of giant lipid vesicles enclosing an agarose gel. In this system, t...
We describe a method to determine membrane bending rigidity from capacitance measurements on large a...
Regulation of plasma membrane curvature and composition governs essential cellular processes. The ma...
International audienceOsmotic deflation of giant vesicles in the rippled gel phase P 0 gives rise to...
To understand the effects of a crystalline protein layer on bilayer properties, we studied the mecha...
International audienceResponsive giant lipid vesicles filled with aqueous PolyNipam sol (SFV) or gel...
This thesis presents the design, development and application of several platforms through which to g...
International audienceGiant Unilamellar Vesicles (GUV) are the most commonly used biomimetic membran...
Giant unilamellar vesicles (GUVs) have sizes in the range of 10-100 μm, which defines their unique p...
AbstractGiant unilamellar vesicles (GUVs) are presumably the current most popular biomimetic membran...
Viscosity is a key property of cell membranes that controls mobility of embedded proteins and membra...
The morphology and dynamics of lipid bilayers are related to their mechanical parameters such as the...
Research on giant vesicles is becoming increasingly popular. Giant vesicles provide model biomembran...
AbstractIn recent years, giant unilamellar vesicles (GUVs) have become objects of intense scrutiny b...
AbstractWe report the properties of giant lipid vesicles enclosing an agarose gel. In this system, t...
We describe a method to determine membrane bending rigidity from capacitance measurements on large a...
Regulation of plasma membrane curvature and composition governs essential cellular processes. The ma...
International audienceOsmotic deflation of giant vesicles in the rippled gel phase P 0 gives rise to...
To understand the effects of a crystalline protein layer on bilayer properties, we studied the mecha...
International audienceResponsive giant lipid vesicles filled with aqueous PolyNipam sol (SFV) or gel...
This thesis presents the design, development and application of several platforms through which to g...