The properties of lipid bilayers in contact with trehalose solutions in water were studied in the full concentration range using molecular dynamics simulations. The mechanism of trehalose interaction with the bilayer surface was analysed considering hydrogen bonding and molecular arrangements as well as the possible changes in bilayer properties. The effect of concentration of the possible mechanisms of trehalose action as membrane protectant were discussed to infer the possible evolution of water replacement by trehalose at the membrane surface and its relationship with the trehalose role in anhydrobiosis and drying processes
The combined effect of trehalose and temperature on the wetting properties of L-dioleoylphosphatidyl...
The combined effect of trehalose and temperature on the wetting properties of L-dioleoylphosphatidyl...
The combined effect of trehalose and temperature on the wetting properties of L-dioleoylphosphatidyl...
The properties of lipid bilayers in contact with trehalose solutions in water were studied in the fu...
The properties of lipid bilayers in contact with trehalose solutions in water were studied in the fu...
The properties of lipid bilayers in contact with trehalose solutions in water were studied in the fu...
AbstractThe disaccharide trehalose is well known for its bioprotective properties. Produced in large...
ABSTRACT The disaccharide trehalose is well known for its bioprotective properties. Produced in larg...
AbstractSurface tensions evaluated from molecular dynamics simulations of fully hydrated dipalmitoyl...
We present molecular dynamics (MD) simulations to study the plausibility of the water replacement hy...
We present molecular dynamics (MD) simulations to study the plausibility of the water replacement hy...
We present molecular dynamics (MD) simulations to study the plausibility of the water replacement hy...
Anhydrobiotic organisms undergo periods of acute dehydration during their life cycle. It is of inter...
AbstractSurface tensions evaluated from molecular dynamics simulations of fully hydrated dipalmitoyl...
Surface pressure-area isotherms, surface potential-area isotherms and fluorescence microscopy were e...
The combined effect of trehalose and temperature on the wetting properties of L-dioleoylphosphatidyl...
The combined effect of trehalose and temperature on the wetting properties of L-dioleoylphosphatidyl...
The combined effect of trehalose and temperature on the wetting properties of L-dioleoylphosphatidyl...
The properties of lipid bilayers in contact with trehalose solutions in water were studied in the fu...
The properties of lipid bilayers in contact with trehalose solutions in water were studied in the fu...
The properties of lipid bilayers in contact with trehalose solutions in water were studied in the fu...
AbstractThe disaccharide trehalose is well known for its bioprotective properties. Produced in large...
ABSTRACT The disaccharide trehalose is well known for its bioprotective properties. Produced in larg...
AbstractSurface tensions evaluated from molecular dynamics simulations of fully hydrated dipalmitoyl...
We present molecular dynamics (MD) simulations to study the plausibility of the water replacement hy...
We present molecular dynamics (MD) simulations to study the plausibility of the water replacement hy...
We present molecular dynamics (MD) simulations to study the plausibility of the water replacement hy...
Anhydrobiotic organisms undergo periods of acute dehydration during their life cycle. It is of inter...
AbstractSurface tensions evaluated from molecular dynamics simulations of fully hydrated dipalmitoyl...
Surface pressure-area isotherms, surface potential-area isotherms and fluorescence microscopy were e...
The combined effect of trehalose and temperature on the wetting properties of L-dioleoylphosphatidyl...
The combined effect of trehalose and temperature on the wetting properties of L-dioleoylphosphatidyl...
The combined effect of trehalose and temperature on the wetting properties of L-dioleoylphosphatidyl...