AbstractDisaccharides such as sucrose and trehalose play an important role in stabilizing cellular structures during dehydration. In fact, most organisms that are able to survive desiccation accumulate high concentrations of sugars in their cells. The mechanisms involved in the stabilization of cellular membranes in the dry state have been investigated using model membranes, such as phosphatidylcholine liposomes. It has been proposed that the lyoprotection of liposomes depends on the depression of the gel to liquid-crystalline phase transition temperature (Tm) of the dry membranes below ambient and on the prevention of membrane fusion by sugar glass formation, because both lead to leakage of soluble content from the liposomes. Since fusion ...
Sugars, particularly trehalose and sucrose, are used to stabilize liposomes during hydration (freeze...
Many organisms accumulate compatible solutes under environmental stress conditions. Cyanobacteria ac...
ABSTRACT Upon cold and drought stress, sucrose and trehalose protect membrane structures from fusion...
AbstractDisaccharides such as sucrose and trehalose play an important role in stabilizing cellular s...
Raffinose family oligosaccharides (RFO) have been implicated as protective agents in the cellular de...
AbstractRaffinose family oligosaccharides (RFO) have been implicated as protective agents in the cel...
AbstractRecent literature has suggested that the depression of the phase transition temperature (Tm)...
Sugars play an important role in the desiccation tolerance of most anhydrobiotic organisms. It has b...
AbstractRaffinose family oligosaccharides (RFO) have been implicated as protective agents in the cel...
AbstractWe present a quantitative study of the effect of sugars on the membrane gel–fluid phase tran...
AbstractUpon cold and drought stress, sucrose and trehalose protect membrane structures from fusion ...
Simple sugars, especially disaccharides, stabilize biomaterials of various composition during air-dr...
AbstractA study is presented of the role of cholesterol content on the gel-to-liquid crystalline pha...
AbstractRecent literature has suggested that the depression of the phase transition temperature (Tm)...
It is well known that sugars and other small solutes can reduce the temperature at which membranes u...
Sugars, particularly trehalose and sucrose, are used to stabilize liposomes during hydration (freeze...
Many organisms accumulate compatible solutes under environmental stress conditions. Cyanobacteria ac...
ABSTRACT Upon cold and drought stress, sucrose and trehalose protect membrane structures from fusion...
AbstractDisaccharides such as sucrose and trehalose play an important role in stabilizing cellular s...
Raffinose family oligosaccharides (RFO) have been implicated as protective agents in the cellular de...
AbstractRaffinose family oligosaccharides (RFO) have been implicated as protective agents in the cel...
AbstractRecent literature has suggested that the depression of the phase transition temperature (Tm)...
Sugars play an important role in the desiccation tolerance of most anhydrobiotic organisms. It has b...
AbstractRaffinose family oligosaccharides (RFO) have been implicated as protective agents in the cel...
AbstractWe present a quantitative study of the effect of sugars on the membrane gel–fluid phase tran...
AbstractUpon cold and drought stress, sucrose and trehalose protect membrane structures from fusion ...
Simple sugars, especially disaccharides, stabilize biomaterials of various composition during air-dr...
AbstractA study is presented of the role of cholesterol content on the gel-to-liquid crystalline pha...
AbstractRecent literature has suggested that the depression of the phase transition temperature (Tm)...
It is well known that sugars and other small solutes can reduce the temperature at which membranes u...
Sugars, particularly trehalose and sucrose, are used to stabilize liposomes during hydration (freeze...
Many organisms accumulate compatible solutes under environmental stress conditions. Cyanobacteria ac...
ABSTRACT Upon cold and drought stress, sucrose and trehalose protect membrane structures from fusion...