The two sugar molecules sucrose and trehalose are both considered as stabilizing molecules for the purpose of preserving biological materials during, for example, lyophilization or cryo-preservation. Although these molecules share a similar molecular structure, there are several important differences in their properties when they interact with water, such as differences in solubility, viscosity, and glass transition temperature. In general, trehalose has been shown to be more efficient than other sugar molecules in preserving different biological molecules against stress, and thus by investigating how these two disaccharides differ in their water interaction, it is possible to further understand what makes trehalose special in its stabilizi...
Some organisms can survive complete dehydration and high temperatures by adopting an anhydrobiotic s...
Understanding sugar lipid interactions during desiccation and freezing is an important step in the e...
none7siSome organisms can survive complete dehydration and high temperatures by adopting an anhydrob...
The understanding of biomolecular interactions with water and co-solutes can lead to greater knowled...
The understanding of biomolecular interactions with water and co-solutes opens up further understand...
The disaccharide trehalose has shown outstanding anti-aggregation properties for proteins, which are...
Trehalose, commonly found in living organisms, is believed to help them survive severe environmental...
Understanding the enhanced efficiency of trehalose to stabilise biologicalmolecules compared to othe...
The molecular structure of an aqueous solution of the disaccharide trehalose (C12H22O11) has been st...
The observation made by early naturalists that some organisms could tolerate extreme environmental c...
The observation made by early naturalists that some organisms could tolerate extreme environmental c...
The observation made by early naturalists that some organisms could tolerate extreme environmental c...
To help understand how sugar interactions with proteins stabilise biomolecular structures, we compar...
In many products proteins have become an important component, and the long-term properties of these ...
The properties of trehalose + water mixtures are studied as a function of mixture composition and te...
Some organisms can survive complete dehydration and high temperatures by adopting an anhydrobiotic s...
Understanding sugar lipid interactions during desiccation and freezing is an important step in the e...
none7siSome organisms can survive complete dehydration and high temperatures by adopting an anhydrob...
The understanding of biomolecular interactions with water and co-solutes can lead to greater knowled...
The understanding of biomolecular interactions with water and co-solutes opens up further understand...
The disaccharide trehalose has shown outstanding anti-aggregation properties for proteins, which are...
Trehalose, commonly found in living organisms, is believed to help them survive severe environmental...
Understanding the enhanced efficiency of trehalose to stabilise biologicalmolecules compared to othe...
The molecular structure of an aqueous solution of the disaccharide trehalose (C12H22O11) has been st...
The observation made by early naturalists that some organisms could tolerate extreme environmental c...
The observation made by early naturalists that some organisms could tolerate extreme environmental c...
The observation made by early naturalists that some organisms could tolerate extreme environmental c...
To help understand how sugar interactions with proteins stabilise biomolecular structures, we compar...
In many products proteins have become an important component, and the long-term properties of these ...
The properties of trehalose + water mixtures are studied as a function of mixture composition and te...
Some organisms can survive complete dehydration and high temperatures by adopting an anhydrobiotic s...
Understanding sugar lipid interactions during desiccation and freezing is an important step in the e...
none7siSome organisms can survive complete dehydration and high temperatures by adopting an anhydrob...