Lipid membranes are commonly confined to adjacent subcellular structures or to artificial substrates and particles. We develop an experimental and theoretical framework to investigate the mechanics of confined membranes, including the influence of adhesion, strain, and osmotic pressure. We find that supported lipid bilayers respond to stress by nucleating and evolving spherical and tubular protrusions. In cells, such transformations are generally attributed to proteins. Our results offer insights into the mechanics of cell membranes and can further extend the applications of supported bilayers.Peer ReviewedPostprint (author's final draft
Accumulating evidence indicates that membrane reshaping and fusion processes, as well as regulation ...
Cellular membranes exhibit a variety of controlled curvatures, with filopodia, microvilli, and mitot...
Cell processes like endocytosis, membrane resealing, signaling and transcription involve conformatio...
Lipid membranes are commonly confined to adjacent subcellular structures or to artificial substrates...
Lipid membranes are commonly confined to adjacent subcellular structures or to artificial substrates...
We examine here the properties of lipid bilayers coupled to deformable substrates. We show that by c...
We examine here the properties of lipid bilayers coupled to deformable substrates. We show that by c...
In this thesis an experimental model for the interface between the cell membrane and the supporting ...
Biological membranes are continuously brought out of equilibrium, as they shape organelles, package ...
AbstractOne of the fundamental properties of biological membranes is the high lateral integrity prov...
The nature of the bilayer motif coupled with the ability of lipids and proteins to diffuse freely th...
Biomimetic and biological membranes consist of lipid-protein bilayers in their fluid state. Because ...
AbstractThe mechanical properties of biological membranes have become increasingly important not onl...
Biological membranes are lamellar structures composed of two leaflets capable of supporting differen...
AbstractAlthough many membrane additives are known to modulate the activities of membrane proteins v...
Accumulating evidence indicates that membrane reshaping and fusion processes, as well as regulation ...
Cellular membranes exhibit a variety of controlled curvatures, with filopodia, microvilli, and mitot...
Cell processes like endocytosis, membrane resealing, signaling and transcription involve conformatio...
Lipid membranes are commonly confined to adjacent subcellular structures or to artificial substrates...
Lipid membranes are commonly confined to adjacent subcellular structures or to artificial substrates...
We examine here the properties of lipid bilayers coupled to deformable substrates. We show that by c...
We examine here the properties of lipid bilayers coupled to deformable substrates. We show that by c...
In this thesis an experimental model for the interface between the cell membrane and the supporting ...
Biological membranes are continuously brought out of equilibrium, as they shape organelles, package ...
AbstractOne of the fundamental properties of biological membranes is the high lateral integrity prov...
The nature of the bilayer motif coupled with the ability of lipids and proteins to diffuse freely th...
Biomimetic and biological membranes consist of lipid-protein bilayers in their fluid state. Because ...
AbstractThe mechanical properties of biological membranes have become increasingly important not onl...
Biological membranes are lamellar structures composed of two leaflets capable of supporting differen...
AbstractAlthough many membrane additives are known to modulate the activities of membrane proteins v...
Accumulating evidence indicates that membrane reshaping and fusion processes, as well as regulation ...
Cellular membranes exhibit a variety of controlled curvatures, with filopodia, microvilli, and mitot...
Cell processes like endocytosis, membrane resealing, signaling and transcription involve conformatio...