(Arginine-alanine-aspartic acid-alanine)4 ((RADA)4) nanoscaffolds are excellent candidates for use as peptide delivery vehicles: they are relatively easy to synthesize with custom bio-functionality, and assemble in situ to allow a focal point of release. This enables (RADA)4 to be utilized in multiple release strategies by embedding a variety of bioactive molecules in an all-in-one “construct”. One novel strategy focuses on the local, on-demand release of peptides triggered via proteolysis of tethered peptide sequences. However, the spatial-temporal morphology of self-assembling nanoscaffolds may greatly influence the ability of enzymes to both diffuse into as well as actively cleave substrates. Fine structure and its impact on ...
ABSTRACT: One-dimensional nanostructures formed by self-assembly of small molecule peptides have bee...
Self-assembly is the most suitable approach to obtaining peptide-based materials on the nano- and me...
Studying the interactions between biomolecules and material interfaces play a crucial role in the de...
(Arginine-alanine-aspartic acid-alanine)4 ((RADA)4) nanoscaffolds are excellent candidates for use a...
The tissue environment is exceptionally complex, with well-controlled biochemical communication occu...
Controlling and guiding cell behavior requires scaffolding materials capable of programming the thre...
Self-assembly is a ubiquitous process in biology where it plays numerous important roles and underli...
How do you design a peptide building block to make 2-dimentional nanowebs and 3-dimensional fibrous ...
Self-assembled structures obtained from organic molecules have shown great potential for application...
Nanomaterials are rich in potential, particularly for the formation of scaffolds that mimic the land...
Self-assembled nanostructures based on peptides and proteins have been investigated and presented as...
Self‐assembled structures obtained from organic molecules have shown great potential for application...
Self-assembled peptides possess remarkable potential as targeted drug delivery systems and key appli...
ABSTRACT: Peptides made of D-amino acids, as the enantiomer of corresponding L-peptides, are able to...
Hierarchical self-assembly of peptide molecules has become an attractive approach of fabricating mul...
ABSTRACT: One-dimensional nanostructures formed by self-assembly of small molecule peptides have bee...
Self-assembly is the most suitable approach to obtaining peptide-based materials on the nano- and me...
Studying the interactions between biomolecules and material interfaces play a crucial role in the de...
(Arginine-alanine-aspartic acid-alanine)4 ((RADA)4) nanoscaffolds are excellent candidates for use a...
The tissue environment is exceptionally complex, with well-controlled biochemical communication occu...
Controlling and guiding cell behavior requires scaffolding materials capable of programming the thre...
Self-assembly is a ubiquitous process in biology where it plays numerous important roles and underli...
How do you design a peptide building block to make 2-dimentional nanowebs and 3-dimensional fibrous ...
Self-assembled structures obtained from organic molecules have shown great potential for application...
Nanomaterials are rich in potential, particularly for the formation of scaffolds that mimic the land...
Self-assembled nanostructures based on peptides and proteins have been investigated and presented as...
Self‐assembled structures obtained from organic molecules have shown great potential for application...
Self-assembled peptides possess remarkable potential as targeted drug delivery systems and key appli...
ABSTRACT: Peptides made of D-amino acids, as the enantiomer of corresponding L-peptides, are able to...
Hierarchical self-assembly of peptide molecules has become an attractive approach of fabricating mul...
ABSTRACT: One-dimensional nanostructures formed by self-assembly of small molecule peptides have bee...
Self-assembly is the most suitable approach to obtaining peptide-based materials on the nano- and me...
Studying the interactions between biomolecules and material interfaces play a crucial role in the de...