This journal is © The Royal Society of Chemistry 2014Self-assembling amyloid-like peptides and proteins give rise to promising biomaterials with potential applications in many fields. Amyloid structures are formed by the process of molecular recognition and self-assembly, wherein a peptide or protein monomer spontaneously self-associates into dimers and oligomers and subsequently into supramolecular aggregates, finally resulting in condensed fibrils. Mature amyloid fibrils possess a quasi-crystalline structure featuring a characteristic fiber diffraction pattern and have well-defined properties, in contrast to many amorphous protein aggregates that arise when proteins misfold. Core sequences of four to seven amino acids have been identified...
Self-assembly of biomolecules into beta-sheet structures can be applied in the creation of nano-mate...
Self-assembly of proteins commonly associated with neurodegenerative diseases can be exploited to ma...
This research focused on development of nanoparticle- based therapeutics against amyloid fibrils. Am...
This journal is © The Royal Society of Chemistry 2014Self-assembling amyloid-like peptides and prote...
Amyloid fibrils are highly ordered β-sheet structures that are formed from a variety of proteins in ...
Self-assembled peptide and protein amyloid nanostructures have traditionally been considered only as...
Amyloidogenic peptides are well known for their involvement in diseases such as type 2 diabetes and ...
Many proteins of diverse sequence, structure and function self-assemble into morphologically similar...
In almost a century of scientific work on the mechanism of amyloid diseases much of the attention ha...
AbstractMany proteins of diverse sequence, structure and function self-assemble into morphologically...
Cataloged from PDF version of article.Amyloid peptides are important components in many degenerative...
Altres ajuts: acords transformatius de la UABProtein amyloid nanofibers provide a biocompatible plat...
Amyloid fibrils are attractive targets for applications in biotechnology. These thin, nanoscale prot...
Numerous human diseases are associated with conformational change and aggregation of proteins, inclu...
© 2012 Dr. Marie N. BongiovanniThe natural ability of biological molecules to self-assemble provides...
Self-assembly of biomolecules into beta-sheet structures can be applied in the creation of nano-mate...
Self-assembly of proteins commonly associated with neurodegenerative diseases can be exploited to ma...
This research focused on development of nanoparticle- based therapeutics against amyloid fibrils. Am...
This journal is © The Royal Society of Chemistry 2014Self-assembling amyloid-like peptides and prote...
Amyloid fibrils are highly ordered β-sheet structures that are formed from a variety of proteins in ...
Self-assembled peptide and protein amyloid nanostructures have traditionally been considered only as...
Amyloidogenic peptides are well known for their involvement in diseases such as type 2 diabetes and ...
Many proteins of diverse sequence, structure and function self-assemble into morphologically similar...
In almost a century of scientific work on the mechanism of amyloid diseases much of the attention ha...
AbstractMany proteins of diverse sequence, structure and function self-assemble into morphologically...
Cataloged from PDF version of article.Amyloid peptides are important components in many degenerative...
Altres ajuts: acords transformatius de la UABProtein amyloid nanofibers provide a biocompatible plat...
Amyloid fibrils are attractive targets for applications in biotechnology. These thin, nanoscale prot...
Numerous human diseases are associated with conformational change and aggregation of proteins, inclu...
© 2012 Dr. Marie N. BongiovanniThe natural ability of biological molecules to self-assemble provides...
Self-assembly of biomolecules into beta-sheet structures can be applied in the creation of nano-mate...
Self-assembly of proteins commonly associated with neurodegenerative diseases can be exploited to ma...
This research focused on development of nanoparticle- based therapeutics against amyloid fibrils. Am...