Glucose-oxidase (GOD), suffers conformational change during freeze-drying. In order to determine the protection level granted by amorphous matrices (AM) of saccharose, maltose, trehalose and their combinations, the thermal inactivation constants (K D) of GOD trapped in these systems were determined. For its evaluation, GOD samples were balanced at different water activities and heated up to 30, 50 and 70 ºC. The best AM found for GOD stability was saccharose-trehalose (5/10% p/v). The K D values (K D.10-4) at a w = 0.0 were 3 at 30 ºC and 6 at 70 ºC. For non-protected GOD under the same conditions these values were 48 at 30 ºC and 257 at 70 ºC
It has been suggested that the crystallization of a sugar hydrate can provide additional desiccation...
Saccharides protect biostructures against adverse environmental conditions mainly by preventing larg...
Biopreservation by saccharides is a widely studied issue due to its scientific and technological imp...
Abstract: Immobilization of proteins and other biomolecules in saccharide matrices leads to a series...
Sugars are the most common excipients added to pharmaceutical and biotechnological formulations as p...
Simple sugars, especially disaccharides, stabilize biomaterials of various composition during air-dr...
Bioprotection by sugars, and in particular trehalose peculiarity, is a relevant topic due to the imp...
Saccharides, and in particular trehalose, are well known for their high efficiency in protecting bio...
The aim of this thesis was to understand the factors that control the chemical stability of the acti...
Proteins embedded in glassy saccharide systems are protected against adverse environmental condition...
Saccharides, and in particular trehalose, are well known for their high efficiency in protecting bio...
Purpose To study how water plasticization affects the molecular mobility and crystallization tendenc...
Understanding of how the stabilization mechanism of trehalose operates on biological molecules again...
El objetivo del presente trabajo fue analizar propiedades de no equilibrio en sistemas amorfos o sob...
Protein-based biopharmaceuticals are generally produced as aqueous solutions and stored refrigerated...
It has been suggested that the crystallization of a sugar hydrate can provide additional desiccation...
Saccharides protect biostructures against adverse environmental conditions mainly by preventing larg...
Biopreservation by saccharides is a widely studied issue due to its scientific and technological imp...
Abstract: Immobilization of proteins and other biomolecules in saccharide matrices leads to a series...
Sugars are the most common excipients added to pharmaceutical and biotechnological formulations as p...
Simple sugars, especially disaccharides, stabilize biomaterials of various composition during air-dr...
Bioprotection by sugars, and in particular trehalose peculiarity, is a relevant topic due to the imp...
Saccharides, and in particular trehalose, are well known for their high efficiency in protecting bio...
The aim of this thesis was to understand the factors that control the chemical stability of the acti...
Proteins embedded in glassy saccharide systems are protected against adverse environmental condition...
Saccharides, and in particular trehalose, are well known for their high efficiency in protecting bio...
Purpose To study how water plasticization affects the molecular mobility and crystallization tendenc...
Understanding of how the stabilization mechanism of trehalose operates on biological molecules again...
El objetivo del presente trabajo fue analizar propiedades de no equilibrio en sistemas amorfos o sob...
Protein-based biopharmaceuticals are generally produced as aqueous solutions and stored refrigerated...
It has been suggested that the crystallization of a sugar hydrate can provide additional desiccation...
Saccharides protect biostructures against adverse environmental conditions mainly by preventing larg...
Biopreservation by saccharides is a widely studied issue due to its scientific and technological imp...