Self-assembly peptide nanotechnology has attracted much attention due to its regular and orderly structure and diverse functions. Most of the existing self-assembly peptides can form aggregates with specific structures only under specific conditions and their assembly time is relatively long. They have good biocompatibility but no immunogenicity. To optimize it, a self-assembly peptide named DRF3 was designed. It contains a hydrophilic and hydrophobic surface, using two N-terminal arginines, leucine, and two c-terminal aspartate and glutamic acid. Meanwhile, the c-terminal of the peptide was amidated, so that peptide segments were interconnected to increase diversity. Its characterization, biocompatibility, controlled release effect on anti...
How do you design a peptide building block to make 2-dimentional nanowebs and 3-dimensional fibrous ...
Self-assembling peptides could be considered a novel class of agents able to harvest an array of mic...
Molecular self-assembly offers unique features for the development of novel supramolecular structure...
Self-assembled peptide hydrogels are particularly appealing for drug delivery, tissue engineering,...
Self-assembled peptides have shown outstanding characteristics for vaccine delivery and drug targeti...
Self-assembling peptide-based nanofibers and hydrogels have been widely applied as cell delivery veh...
In recent years, self-assembled peptide nanotechnology has attracted a great deal of attention for i...
Self-assembly of peptides is a powerful method of preparing nanostructured materials. These peptides...
Self-assembling peptide-based biomaterials are promising for use in biomedical applications due to t...
The fabrication of artificial scaffolds that effectively mimic the host environment of the cell have...
As a new type of biological material, short peptide self-assembled hydrogel holds the advantages of ...
Hydrogel scaffolds are at the forefront of tissue engineering research due to several distinct chara...
Self-assembling peptides could be considered a novel class of agents able to harvest an array of mic...
Self-assembly is a growth mechanism in nature to apply local interactions forming a minimum energy s...
Synthesis of nanomaterials via 'molecular self-assembly' allows one to define the properties of the ...
How do you design a peptide building block to make 2-dimentional nanowebs and 3-dimensional fibrous ...
Self-assembling peptides could be considered a novel class of agents able to harvest an array of mic...
Molecular self-assembly offers unique features for the development of novel supramolecular structure...
Self-assembled peptide hydrogels are particularly appealing for drug delivery, tissue engineering,...
Self-assembled peptides have shown outstanding characteristics for vaccine delivery and drug targeti...
Self-assembling peptide-based nanofibers and hydrogels have been widely applied as cell delivery veh...
In recent years, self-assembled peptide nanotechnology has attracted a great deal of attention for i...
Self-assembly of peptides is a powerful method of preparing nanostructured materials. These peptides...
Self-assembling peptide-based biomaterials are promising for use in biomedical applications due to t...
The fabrication of artificial scaffolds that effectively mimic the host environment of the cell have...
As a new type of biological material, short peptide self-assembled hydrogel holds the advantages of ...
Hydrogel scaffolds are at the forefront of tissue engineering research due to several distinct chara...
Self-assembling peptides could be considered a novel class of agents able to harvest an array of mic...
Self-assembly is a growth mechanism in nature to apply local interactions forming a minimum energy s...
Synthesis of nanomaterials via 'molecular self-assembly' allows one to define the properties of the ...
How do you design a peptide building block to make 2-dimentional nanowebs and 3-dimensional fibrous ...
Self-assembling peptides could be considered a novel class of agents able to harvest an array of mic...
Molecular self-assembly offers unique features for the development of novel supramolecular structure...