AbstractNeutron reflectivity has been applied to investigate different mixed asymmetric lipid systems, in the form of single “supported+floating” bilayers, made of phospholipids, cholesterol and GM1 ganglioside (Neu5Acα2-3(Galβ1-3GalNAcβ1-4)Galβ1-4Glcβ1Cer)) in bio-similar mole ratios. Bilayer preparation was carried out layer-by-layer with the Langmuir–Blodgett Langmuir–Schaefer techniques, allowing for compositional asymmetry in the system buildup. It is the first time that such a complex model membrane system is reported. Two important conclusions are drawn. First, it is experimentally shown that the presence of GM1 enforces an asymmetry in cholesterol distribution, opposite to what happens for a GM1-free membrane that, submitted to a si...
AbstractWe have compared the domain forming properties of three neutral acyl chain defined glycosphi...
We studied the transleaflet coupling of compositionally asymmetric liposomes in the fluid phase. The...
Cell membranes are very complex biological systems including a large variety of lipids and proteins....
AbstractThe cell membrane comprises numerous protein and lipid molecules capable of asymmetric organ...
To assess the structure of complex biomembranes, the use of asymmetric model systems is rare, due to...
Despite the ubiquity of transbilayer asymmetry in natural cell membranes, the vast majority of exist...
It is well known that the lipid distribution in the bilayer leaflets of mammalian plasma membranes (...
AbstractLipid domain formation in membranes underlies the concept of rafts but their structure is co...
AbstractCell membranes have complex lipid compositions, including an asymmetric distribution of phos...
Bilayer lipid membranes are fundamental to the function of eukaryotic cells. A discernible character...
Lipid asymmetry is a crucial property of biological membranes and significantly influences their phy...
Microcavity supported lipid bilayers (MSLB) are contact-free membranes suspended across aqueousfille...
The cohabitation of lipids and proteins in the plasma membrane of mammalian cells is controlled by s...
AbstractAtomic force microscopy has been used to study the distribution of ganglioside GM1 in model ...
Despite the ubiquity of transbilayer asymmetry in natural cell membranes, the vast majority of exist...
AbstractWe have compared the domain forming properties of three neutral acyl chain defined glycosphi...
We studied the transleaflet coupling of compositionally asymmetric liposomes in the fluid phase. The...
Cell membranes are very complex biological systems including a large variety of lipids and proteins....
AbstractThe cell membrane comprises numerous protein and lipid molecules capable of asymmetric organ...
To assess the structure of complex biomembranes, the use of asymmetric model systems is rare, due to...
Despite the ubiquity of transbilayer asymmetry in natural cell membranes, the vast majority of exist...
It is well known that the lipid distribution in the bilayer leaflets of mammalian plasma membranes (...
AbstractLipid domain formation in membranes underlies the concept of rafts but their structure is co...
AbstractCell membranes have complex lipid compositions, including an asymmetric distribution of phos...
Bilayer lipid membranes are fundamental to the function of eukaryotic cells. A discernible character...
Lipid asymmetry is a crucial property of biological membranes and significantly influences their phy...
Microcavity supported lipid bilayers (MSLB) are contact-free membranes suspended across aqueousfille...
The cohabitation of lipids and proteins in the plasma membrane of mammalian cells is controlled by s...
AbstractAtomic force microscopy has been used to study the distribution of ganglioside GM1 in model ...
Despite the ubiquity of transbilayer asymmetry in natural cell membranes, the vast majority of exist...
AbstractWe have compared the domain forming properties of three neutral acyl chain defined glycosphi...
We studied the transleaflet coupling of compositionally asymmetric liposomes in the fluid phase. The...
Cell membranes are very complex biological systems including a large variety of lipids and proteins....