Ionic liquids (ILs) are a vast class of organic non-aqueous electrolytes whose interaction with biomolecules is receiving great attention for potential applications in bio-nano-technology. Recently, it has been shown that ILs can affect protein amyloidogenesis. Whereas some ILs favour the aggregation of proteins into amyloids, others inhibit their formation. Moreover, ILs can dissolve mature fibrils and restore the protein biochemical function. In this letter, we present a brief state-of-the-art summary of this emerging field that holds the promise of important developments both in basic science and in applications from bio-medicine to material science, and bio-nano-technology. The huge variety of ILs offers a vast playground for future stu...
Ionic liquids (ILs) have emerged as novel solvent medium for several biotechnological processes in v...
Proteins are a diverse class of molecules that can act as catalysts and structural components. Inter...
The formation of amyloid fibrils from non-disease-related proteins demonstrates that any protein can...
Ionic liquids (ILs) are a vast class of organic non-aqueous electrolytes whose interaction with biom...
The primary subject of my Ph.D research work was focussed on the role of a new family of organic ele...
Protein aggregation into amyloid fibrils has been observed in several pathological conditions and ex...
Protein aggregation into amyloid fibrils has been observed in several pathological conditions and ex...
Over the last few years, researchers have started to explore a particular class of compounds defined...
Biopolymer processing and handling is greatly facilitated by the use of ionic liquids, given the inc...
Biopolymer processing and handling is greatly facilitated by the use of ionic liquids, given the inc...
The structural transitions of proteins in aqueous solutions of various ionic liquids (ILs) over a wi...
Ionic liquids (ILs) are a relatively new class of organic electrolytes composed of an organic cation...
The protein stability in aqueous solutions is a commonly concerned issue in various biological field...
This study highlights the role of time-dependent hydrolysis of ionic liquid anion, [BF4]−, of ionic ...
One of the key necessary steps to prevent human neurological disorders is the efficient disruption o...
Ionic liquids (ILs) have emerged as novel solvent medium for several biotechnological processes in v...
Proteins are a diverse class of molecules that can act as catalysts and structural components. Inter...
The formation of amyloid fibrils from non-disease-related proteins demonstrates that any protein can...
Ionic liquids (ILs) are a vast class of organic non-aqueous electrolytes whose interaction with biom...
The primary subject of my Ph.D research work was focussed on the role of a new family of organic ele...
Protein aggregation into amyloid fibrils has been observed in several pathological conditions and ex...
Protein aggregation into amyloid fibrils has been observed in several pathological conditions and ex...
Over the last few years, researchers have started to explore a particular class of compounds defined...
Biopolymer processing and handling is greatly facilitated by the use of ionic liquids, given the inc...
Biopolymer processing and handling is greatly facilitated by the use of ionic liquids, given the inc...
The structural transitions of proteins in aqueous solutions of various ionic liquids (ILs) over a wi...
Ionic liquids (ILs) are a relatively new class of organic electrolytes composed of an organic cation...
The protein stability in aqueous solutions is a commonly concerned issue in various biological field...
This study highlights the role of time-dependent hydrolysis of ionic liquid anion, [BF4]−, of ionic ...
One of the key necessary steps to prevent human neurological disorders is the efficient disruption o...
Ionic liquids (ILs) have emerged as novel solvent medium for several biotechnological processes in v...
Proteins are a diverse class of molecules that can act as catalysts and structural components. Inter...
The formation of amyloid fibrils from non-disease-related proteins demonstrates that any protein can...