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Surface density and lateral fluidity depended on the type of phospholipids in the monolayers as characterized by SPR and fluorescence recovery after photobleaching measurements.
By "painting" a solution of lipid in organic solvent across an aperture, Mueller and Rudin were able to create an artificial bilayer and determine that this exhibited lateral fluidity, high electrical resistance and self-healing in response to puncture, all of which are properties of a natural cell membrane.
It has also been documented that supported bilayers preserve many properties of free membranes such as lateral fluidity [46].
In subsequent years, it was demonstrated that planar phospholipid bilayers could be generated simply by fusing these vesicles to various solid substrates (e.g. glass [ 2] and quartz [ 3]), generating "supported membranes" which have lateral fluidity.
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[13], [14] The properties of the covalently-bound lipid assembly, i.e. optical thickness and lipid fluidity (lateral diffusion coefficient and mobility of the fluorescent lipid DPPE-NBD, 2% mol), were characterized by SPR and by fluorescence recovery after photo-bleaching (FRAP) respectively.
Fluidity and lateral mobility of ssBLMs can be characterized quantitatively by AFM and fluorescence microscopy.
Given the chemical and compositional diversity of biological membranes, and their differing physical properties including thickness, fluidity, curvature, lateral pressure, bilayer coupling and surface charge, they constitute highly specialized environments.
In addition, gal-1 binding to GRG disrupts inter-glycan interactions and decreases glycan-mediated solution viscosity, a glycan decongestion effect that may help explain why gal-1 promotes membrane fluidity and lateral diffusion of glycoconjugates within cell membranes.
We also show that binding of gal-1 to GRG disrupts inter-glycan interactions and decreases glycan-mediated solution viscosity, which may help explain previous findings that gal-1 promotes increased membrane fluidity and lateral diffusion of glycoconjugates within cell membranes.
The use of lipid-based mimics, usually synthetic liposomes, has provided a wealth of information based on the ability to introduce guest lipids to modulate surface charge, lateral pressure and membrane fluidity and to examine their effect on OMP folding and stability.
In addition, they exhibit biomimetic membrane fluidity and demonstrate lateral diffusive properties characteristic of natural membrane proteins.
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