Elastin and elastin-related peptides have great potential in the biomaterial field, because of their peculiar mechanical properties and spontaneous self-assembling behavior. Depending on their sequences and under appropriate experimental conditions, they are able to self-assemble in different fiber morphologies, including amyloid-like fibers. Temperature-triggered self-assembly of a small elastin peptide shows a novel complex aggregation mechanism as revealed by different microscopy techniques. The conformations of the peptide have been investigated in solution and in the aggregated state by different spectroscopic techniques (CD, NMR, FT-IR) and revealed that the conformations adopted by the peptides in water in the prefibrillar state corr...
Elastin confers elasticity to various vertebrate tissues. Elastin and elastin-like peptides are diso...
Elastin-derived peptides are gaining increasing interest as potential biomaterials. Short elastin-de...
Peptide-based biomaterials are gaining increasing interest as biomaterials for tissue engineering as...
Elastin and elastin-related peptides have great potential in the biomaterial field, because of their...
Understanding the basic mechanisms and dynamics that drive the assembly of molecules into functional...
A novel type of self-assembling peptides has been developed by introducing the basic elastomeric &be...
Elastin is known to self-aggregate in twisted-rope filaments. However, an ultrastructural organizati...
Elastin is known to self-aggregate in twisted-rope filaments. However, an ultrastructural organizati...
Elastin is the protein responsible for the elastic recoil of skin, arteries, and lungs. In order to ...
Elastin and elastin-related peptides have great potential in the biomaterial field, because of their...
Elastin and elastin-related peptides have great potential in the biomaterial field, because of their...
International audienceFor the first time, calorimetric studies performed at very low temperature hig...
Elastin-derived peptides are gaining increasing interest as potential biomaterials. Previous studies...
Elastin-like polypeptides adopt complex supramolecular structures, showing either a hydrophobic or a...
Elastin confers elasticity to various vertebrate tissues. Elastin and elastin-like peptides are diso...
Elastin-derived peptides are gaining increasing interest as potential biomaterials. Short elastin-de...
Peptide-based biomaterials are gaining increasing interest as biomaterials for tissue engineering as...
Elastin and elastin-related peptides have great potential in the biomaterial field, because of their...
Understanding the basic mechanisms and dynamics that drive the assembly of molecules into functional...
A novel type of self-assembling peptides has been developed by introducing the basic elastomeric &be...
Elastin is known to self-aggregate in twisted-rope filaments. However, an ultrastructural organizati...
Elastin is known to self-aggregate in twisted-rope filaments. However, an ultrastructural organizati...
Elastin is the protein responsible for the elastic recoil of skin, arteries, and lungs. In order to ...
Elastin and elastin-related peptides have great potential in the biomaterial field, because of their...
Elastin and elastin-related peptides have great potential in the biomaterial field, because of their...
International audienceFor the first time, calorimetric studies performed at very low temperature hig...
Elastin-derived peptides are gaining increasing interest as potential biomaterials. Previous studies...
Elastin-like polypeptides adopt complex supramolecular structures, showing either a hydrophobic or a...
Elastin confers elasticity to various vertebrate tissues. Elastin and elastin-like peptides are diso...
Elastin-derived peptides are gaining increasing interest as potential biomaterials. Short elastin-de...
Peptide-based biomaterials are gaining increasing interest as biomaterials for tissue engineering as...