The understanding of the shape-change dynamics leading to the budding and division of artificial cells has gained much attention in the past few decades due to an increased interest in designing stimuli-responsive synthetic systems and minimal models of biological self-reproduction. In this respect, membranes and their composition play a fundamental role in many aspects related to the stability of the vesicles: permeability, elasticity, rigidity, tunability and response to external changes. In this review, we summarise recent experimental and theoretical work dealing with shape deformation and division of (giant) vesicles made of phospholipids and/or fatty acids membranes. Following a classic approach, we divide the strategies used to desta...
AbstractThe main objective of this lecture is to discuss the role of lipid-bilayer elasticity (1) fo...
Lipid vesicles, in particular Giant Unilamellar Vesicles (GUVs), have been increasingly important a...
A variety of factors, including changes in temperature or osmotic pressure, can trigger morphologica...
The understanding of the shape-change dynamics leading to the budding and division of artificial cel...
Biomimetic and biological membranes consist of lipid-protein bilayers in their fluid state. Because ...
We discuss the shape formation and shape transitions of simple bilayer vesicles in context with thei...
Abstract.- Shape transformations of vesicles of lecithin (DMPC) in water are induced by changing the...
International audienceOsmotic deflation of giant vesicles in the rippled gel phase P 0 gives rise to...
International audienceThe influence of a phospholipid transmembrane redistribution on the shape of n...
Shape transformations of vesicles of dimyristoylphosphatidylcholine (= DMPC) and palmitoyloleylphosp...
The influence of a phospholipid transmembrane redistribution on the shape of nonspherical flaccid ve...
<div><p>Lipid vesicles, in particular Giant Unilamellar Vesicles (GUVs), have been increasingly impo...
AbstractThe main objective of this lecture is to discuss the role of lipid-bilayer elasticity (1) fo...
Lipid vesicles, in particular Giant Unilamellar Vesicles (GUVs), have been increasingly important a...
A variety of factors, including changes in temperature or osmotic pressure, can trigger morphologica...
The understanding of the shape-change dynamics leading to the budding and division of artificial cel...
Biomimetic and biological membranes consist of lipid-protein bilayers in their fluid state. Because ...
We discuss the shape formation and shape transitions of simple bilayer vesicles in context with thei...
Abstract.- Shape transformations of vesicles of lecithin (DMPC) in water are induced by changing the...
International audienceOsmotic deflation of giant vesicles in the rippled gel phase P 0 gives rise to...
International audienceThe influence of a phospholipid transmembrane redistribution on the shape of n...
Shape transformations of vesicles of dimyristoylphosphatidylcholine (= DMPC) and palmitoyloleylphosp...
The influence of a phospholipid transmembrane redistribution on the shape of nonspherical flaccid ve...
<div><p>Lipid vesicles, in particular Giant Unilamellar Vesicles (GUVs), have been increasingly impo...
AbstractThe main objective of this lecture is to discuss the role of lipid-bilayer elasticity (1) fo...
Lipid vesicles, in particular Giant Unilamellar Vesicles (GUVs), have been increasingly important a...
A variety of factors, including changes in temperature or osmotic pressure, can trigger morphologica...