International audienceGrowth and division experiments on phospholipid boundaries were carried out using glass microsphere‐supported phospholipid (DOPC) giant vesicles (GVs) fed with a fatty acid solution (oleic acid) at two distinct feeding rates. Both fast and slow feeding methods produced daughter GVs. Under slow feeding conditions the membrane growth process (evagination, buds, filaments) was observed in detail by fluorescence microscopy. The density difference between supported mother vesicles and newly formed daughter vesicles allowed their easy separation. Mass spectrometric analysis of the resulting mother and daughter GVs showed that the composition of both vesicle types was a mixture of original supported phospholipids and added fa...
<div><p>Giant lipid vesicles (GVs) are emerging models for investigating the properties and reactivi...
Giant unilamellar vesicles with diameters ranging from 10 to 60 microns were obtained by the swellin...
In this review, we describe recent studies of giant unilamellar vesicles exposed to aqueous polymer ...
Giant vesicles (GVs) are widely-used model systems for biological membranes. The formulation of the...
Giant vesicles (GVs) are widely-used model systems for biological membranes. The formulation of thes...
International audienceUsing a microfluidic trap, we study the behavior of individual phospholipid ve...
International audienceThe influence of a phospholipid transmembrane redistribution on the shape of n...
The influence of a phospholipid transmembrane redistribution on the shape of nonspherical flaccid ve...
International audienceVesicles are closed membranes of spherical shape separating a water compartmen...
Several methods for the preparation of giant unilamellar vesicles (GUVs) using synthetic phosphatidy...
In this study, we prepare giant lipid vesicles using vapor-deposited charged microporous poly(metha...
Recent years have seen a tremendous interest in the bottom-up reconstitution of minimal biomolecular...
We introduce an experimental method based upon a glass micropipette microinjection technique for gen...
The use of artificial lipid membranes, structured as giant unilamellar vesicles (GUVs), provides the...
The understanding of the shape-change dynamics leading to the budding and division of artificial cel...
<div><p>Giant lipid vesicles (GVs) are emerging models for investigating the properties and reactivi...
Giant unilamellar vesicles with diameters ranging from 10 to 60 microns were obtained by the swellin...
In this review, we describe recent studies of giant unilamellar vesicles exposed to aqueous polymer ...
Giant vesicles (GVs) are widely-used model systems for biological membranes. The formulation of the...
Giant vesicles (GVs) are widely-used model systems for biological membranes. The formulation of thes...
International audienceUsing a microfluidic trap, we study the behavior of individual phospholipid ve...
International audienceThe influence of a phospholipid transmembrane redistribution on the shape of n...
The influence of a phospholipid transmembrane redistribution on the shape of nonspherical flaccid ve...
International audienceVesicles are closed membranes of spherical shape separating a water compartmen...
Several methods for the preparation of giant unilamellar vesicles (GUVs) using synthetic phosphatidy...
In this study, we prepare giant lipid vesicles using vapor-deposited charged microporous poly(metha...
Recent years have seen a tremendous interest in the bottom-up reconstitution of minimal biomolecular...
We introduce an experimental method based upon a glass micropipette microinjection technique for gen...
The use of artificial lipid membranes, structured as giant unilamellar vesicles (GUVs), provides the...
The understanding of the shape-change dynamics leading to the budding and division of artificial cel...
<div><p>Giant lipid vesicles (GVs) are emerging models for investigating the properties and reactivi...
Giant unilamellar vesicles with diameters ranging from 10 to 60 microns were obtained by the swellin...
In this review, we describe recent studies of giant unilamellar vesicles exposed to aqueous polymer ...