AbstractThis study was conducted to explore how the nature of the acyl chains of sphingomyelin (SM) influence its lateral distribution in the ternary lipid mixture SM/cholesterol/1,2-dioleoyl-sn-glycero-3-phosphocholine (DOPC), focusing on the importance of the hydrophobic part of the SM molecule for domain formation. Atomic force microscopy (AFM) measurements showed that the presence of a double bond in the 24:1 SM molecule in mixtures with cholesterol (CHO) or in pure bilayers led to a decrease in the molecular packing. Confocal microscopy and AFM showed, at the meso- and nanoscales respectively, that unlike 16:0 and 24:0 SM, 24:1 SM does not induce phase segregation in ternary lipid mixtures with DOPC and CHO. This ternary lipid mixture ...
Sphingomyelin (SM) and cholesterol are major components of the mammalian cell plasma membrane. It is...
Sphingomyelins (SM) and phosphatidylcholines (PC) are major lipid classes in the external plasma mem...
Understanding the lateral organization of biological membranes plays a key role on the road to fully...
This study was conducted to explore how the nature of the acyl chains of sphingomyelin (SM) influenc...
This study was conducted to explore how the nature of the acyl chains of sphingomyelin (SM) influenc...
AbstractThis study was conducted to explore how the nature of the acyl chains of sphingomyelin (SM) ...
This study was conducted to explore how the nature of the acyl chains of sphingomyelin (SM) influenc...
In this study, we applied fluorescence spectroscopy, differential scanning calorimetry (DSC), and 2H...
AbstractIn this study, we compared domain formation in raft-like mixtures of cholesterol and dioleoy...
AbstractIn recent years, the implication of sphingomyelin in lipid raft formation has intensified th...
AbstractSphingomyelin (SM) is a major phospholipid in most cell membranes. SMs are composed of a lon...
AbstractAtomic force microscopy has been used to study the distribution of ganglioside GM1 in model ...
ABSTRACT Lipids segregate with each other into small domains in biological membranes, which can faci...
AbstractMembrane microdomains, such as caveolae and rafts, are enriched in cholesterol and sphingomy...
AbstractLipid lateral segregation in the plasma membrane is believed to play an important role in ce...
Sphingomyelin (SM) and cholesterol are major components of the mammalian cell plasma membrane. It is...
Sphingomyelins (SM) and phosphatidylcholines (PC) are major lipid classes in the external plasma mem...
Understanding the lateral organization of biological membranes plays a key role on the road to fully...
This study was conducted to explore how the nature of the acyl chains of sphingomyelin (SM) influenc...
This study was conducted to explore how the nature of the acyl chains of sphingomyelin (SM) influenc...
AbstractThis study was conducted to explore how the nature of the acyl chains of sphingomyelin (SM) ...
This study was conducted to explore how the nature of the acyl chains of sphingomyelin (SM) influenc...
In this study, we applied fluorescence spectroscopy, differential scanning calorimetry (DSC), and 2H...
AbstractIn this study, we compared domain formation in raft-like mixtures of cholesterol and dioleoy...
AbstractIn recent years, the implication of sphingomyelin in lipid raft formation has intensified th...
AbstractSphingomyelin (SM) is a major phospholipid in most cell membranes. SMs are composed of a lon...
AbstractAtomic force microscopy has been used to study the distribution of ganglioside GM1 in model ...
ABSTRACT Lipids segregate with each other into small domains in biological membranes, which can faci...
AbstractMembrane microdomains, such as caveolae and rafts, are enriched in cholesterol and sphingomy...
AbstractLipid lateral segregation in the plasma membrane is believed to play an important role in ce...
Sphingomyelin (SM) and cholesterol are major components of the mammalian cell plasma membrane. It is...
Sphingomyelins (SM) and phosphatidylcholines (PC) are major lipid classes in the external plasma mem...
Understanding the lateral organization of biological membranes plays a key role on the road to fully...