Biological membranes display considerable anisotropy due to differences in composition, physical characteristics, and packing of membrane components. In this Letter, we have demonstrated the environmental heterogeneity along the bilayer normal in a depth-dependent manner using a number of anthroyloxy fatty acid probes. We employed fluorescence lifetime distribution analysis utilizing the maximum entropy method (MEM) to assess heterogeneity. Our results show that the fluorescence lifetime heterogeneity varies considerably depending on fluorophore location along the membrane normal (depth), and it is the result of the anisotropic environmental heterogeneity along the bilayer normal. Environmental heterogeneity is reduced as the reporter group...
The fluorescence decay of 1,6-diphenyl-1,3,5-hexatriene has been used to characterize the structural...
We describe the theory and experimental application of fluorescence depolarization measurements on s...
The extent of lipid packing is one of the key physicochemical features of biological membranes and i...
Realistic description of biomembrane heterogeneity is essential for understanding the complexity of ...
Membranes are complex biological systems that display heterogeneity at all spatial scales. At a mole...
Fluid heterogeneity in lipid bilayers and shows a simple and useful method to quantify this heteroge...
Fluorescence anisotropy measurements on isotropically distributed membranes yield the well-known ori...
Any chemist studying the interaction of molecules with lipid assemblies will eventually be confronte...
The lipid composition of archaea is unique and has been correlated with increased stability under ex...
ABSTRACT: The lipid composition of archaea is unique and has been correlated with increased stabilit...
The fluorescence decay of the linear dye probe DODCI in bilayer membranes is faster in the presence ...
AbstractThe structure and dynamics of planar supported membranes were studied by using the fluoresce...
AbstractThe partition coefficients (KP) of a series of single-chain and double-chain fluorescent amp...
Membrane penetration depth represents an important parameter which can be used to define the conform...
The hydrocarbon order of a membrane bilayer in the hydrocarbon region is suggested to play a fundame...
The fluorescence decay of 1,6-diphenyl-1,3,5-hexatriene has been used to characterize the structural...
We describe the theory and experimental application of fluorescence depolarization measurements on s...
The extent of lipid packing is one of the key physicochemical features of biological membranes and i...
Realistic description of biomembrane heterogeneity is essential for understanding the complexity of ...
Membranes are complex biological systems that display heterogeneity at all spatial scales. At a mole...
Fluid heterogeneity in lipid bilayers and shows a simple and useful method to quantify this heteroge...
Fluorescence anisotropy measurements on isotropically distributed membranes yield the well-known ori...
Any chemist studying the interaction of molecules with lipid assemblies will eventually be confronte...
The lipid composition of archaea is unique and has been correlated with increased stability under ex...
ABSTRACT: The lipid composition of archaea is unique and has been correlated with increased stabilit...
The fluorescence decay of the linear dye probe DODCI in bilayer membranes is faster in the presence ...
AbstractThe structure and dynamics of planar supported membranes were studied by using the fluoresce...
AbstractThe partition coefficients (KP) of a series of single-chain and double-chain fluorescent amp...
Membrane penetration depth represents an important parameter which can be used to define the conform...
The hydrocarbon order of a membrane bilayer in the hydrocarbon region is suggested to play a fundame...
The fluorescence decay of 1,6-diphenyl-1,3,5-hexatriene has been used to characterize the structural...
We describe the theory and experimental application of fluorescence depolarization measurements on s...
The extent of lipid packing is one of the key physicochemical features of biological membranes and i...