AbstractSugars are known to stabilize proteins. This study addresses questions of the nature of sugar and proteins incorporated in solid sugar films. Infrared (IR) and Raman spectroscopy was used to examine trehalose and sucrose films and glycerol/water solvent. Proteins and indole-containing compounds that are imbedded in the sugar films were studied by IR and optical (absorption, fluorescence, and phosphorescence) spectroscopy. Water is able to move in the sugar films in the temperature range of 20–300K as suggested by IR absorption bands of HOH bending and OH stretching modes that shift continuously with temperature. In glycerol/water these bands reflect the glass transition at ∼160K. The fluorescence of N-acetyl-L-tryptophanamide and tr...
Sugars are often used as stabilizers of protein formulations during freeze-drying. However, not all ...
Abstract: Immobilization of proteins and other biomolecules in saccharide matrices leads to a series...
Cells of many organisms and organs can withstand an (almost) total water loss (anhydrobiosis). Sugar...
AbstractSugars are known to stabilize proteins. This study addresses questions of the nature of suga...
Amorphous solids lack the long-range order of crystalline solids. Their molecular mobility propertie...
Embedding protein in sugar systems of low water content enables one to investigate the protein dynam...
A systematic comparison was made of four different phosphorescent probes: erythrosine, tryptophan, t...
AbstractEmbedding protein in sugar systems of low water content enables one to investigate the prote...
Saccharides, and in particular trehalose, are well known for their high efficiency in protecting bio...
Saccharides, and in particular trehalose, are well known for their high efficiency in protecting bio...
Disaccharide glasses are increasingly used to immobilize proteins at room temperature for structural...
It is well known that sugars , such as trehalose , dehydrate lipid membranes based upon the Water ...
Abstract: The effects of the disaccharides maltose, sucrose and trehalose on the Raman spectra of H2...
Disaccharide glasses are increasingly used to immobilize proteins at room temperature for structural...
Bioprotection by sugars, and in particular trehalose peculiarity, is a relevant topic due to the imp...
Sugars are often used as stabilizers of protein formulations during freeze-drying. However, not all ...
Abstract: Immobilization of proteins and other biomolecules in saccharide matrices leads to a series...
Cells of many organisms and organs can withstand an (almost) total water loss (anhydrobiosis). Sugar...
AbstractSugars are known to stabilize proteins. This study addresses questions of the nature of suga...
Amorphous solids lack the long-range order of crystalline solids. Their molecular mobility propertie...
Embedding protein in sugar systems of low water content enables one to investigate the protein dynam...
A systematic comparison was made of four different phosphorescent probes: erythrosine, tryptophan, t...
AbstractEmbedding protein in sugar systems of low water content enables one to investigate the prote...
Saccharides, and in particular trehalose, are well known for their high efficiency in protecting bio...
Saccharides, and in particular trehalose, are well known for their high efficiency in protecting bio...
Disaccharide glasses are increasingly used to immobilize proteins at room temperature for structural...
It is well known that sugars , such as trehalose , dehydrate lipid membranes based upon the Water ...
Abstract: The effects of the disaccharides maltose, sucrose and trehalose on the Raman spectra of H2...
Disaccharide glasses are increasingly used to immobilize proteins at room temperature for structural...
Bioprotection by sugars, and in particular trehalose peculiarity, is a relevant topic due to the imp...
Sugars are often used as stabilizers of protein formulations during freeze-drying. However, not all ...
Abstract: Immobilization of proteins and other biomolecules in saccharide matrices leads to a series...
Cells of many organisms and organs can withstand an (almost) total water loss (anhydrobiosis). Sugar...