Any chemist studying the interaction of molecules with lipid assemblies will eventually be confronted by the topic of membrane bilayer heterogeneity and may ultimately encounter the heterogeneity of natural membranes. In artificial bilayers, heterogeneity is defined by phase segregation that can be in the nano- and micrometer range. In biological bilayers, heterogeneity is considered in the context of small (10-200 nm) sterol and sphingolipid-enriched heterogeneous and highly dynamic domains. Several techniques can be used to assess membrane heterogeneity in living systems. Our approach is to use a fluorescent reporter molecule immersed in the bilayer, which, by changes in its spectroscopic properties, senses physical-chemistry aspects of t...
Laurdan is a fluorescent molecule that detects changes in membrane phase properties through its sens...
Lipid packing is a crucial feature of cellular membranes. Quantitative analysis of membrane lipid pa...
The organization of lipids surrounding membrane proteins can influence their properties. We have use...
There are several commonly used approaches for the study of membrane properties of live cells based ...
Detection of the fluorescent properties of Laurdan has been proven to be an efficient tool to invest...
2-Dimethylamino-6-lauroylnaphthalene (Laurdan) is a membrane probe of recent characterization, which...
AbstractDetection of the fluorescent properties of Laurdan has been proven to be an efficient tool t...
Cellular membranes are heterogeneous in composition, and the prevailing theory holds that the struct...
The sensitivity of Laurdan (6-dodecanoyl-2-dimethylaminonaphthalene) excitation and emission spectra...
The highly hydrophobic fluorophore Laurdan (6-dodecanoyl-2-(dimethylaminonaphthalene)) has been wide...
Cellular membranes are heterogeneous in composition, and the prevailing theory holds that the struct...
Mammalian cell membranes have different phospholipid composition and cholesterol content, displaying...
AbstractLaurdan is a fluorescent probe that detects changes in membrane phase properties through its...
Two-photon excitation microscopy shows coexisting regions of different generalized polarization (GP)...
The organization of lipids surrounding membrane proteins can influence their properties. We have use...
Laurdan is a fluorescent molecule that detects changes in membrane phase properties through its sens...
Lipid packing is a crucial feature of cellular membranes. Quantitative analysis of membrane lipid pa...
The organization of lipids surrounding membrane proteins can influence their properties. We have use...
There are several commonly used approaches for the study of membrane properties of live cells based ...
Detection of the fluorescent properties of Laurdan has been proven to be an efficient tool to invest...
2-Dimethylamino-6-lauroylnaphthalene (Laurdan) is a membrane probe of recent characterization, which...
AbstractDetection of the fluorescent properties of Laurdan has been proven to be an efficient tool t...
Cellular membranes are heterogeneous in composition, and the prevailing theory holds that the struct...
The sensitivity of Laurdan (6-dodecanoyl-2-dimethylaminonaphthalene) excitation and emission spectra...
The highly hydrophobic fluorophore Laurdan (6-dodecanoyl-2-(dimethylaminonaphthalene)) has been wide...
Cellular membranes are heterogeneous in composition, and the prevailing theory holds that the struct...
Mammalian cell membranes have different phospholipid composition and cholesterol content, displaying...
AbstractLaurdan is a fluorescent probe that detects changes in membrane phase properties through its...
Two-photon excitation microscopy shows coexisting regions of different generalized polarization (GP)...
The organization of lipids surrounding membrane proteins can influence their properties. We have use...
Laurdan is a fluorescent molecule that detects changes in membrane phase properties through its sens...
Lipid packing is a crucial feature of cellular membranes. Quantitative analysis of membrane lipid pa...
The organization of lipids surrounding membrane proteins can influence their properties. We have use...