Understanding peptide self-assembly mechanisms and stability of the formed assemblies is crucial for the development of functional nanomaterials. Herein, we have adopted a rational design approach to demonstrate how a minimal structural modification to a nonassembling ultrashort ionic self-complementary tetrapeptide FEFK (Phe4) remarkably enhanced the stability of self-assembly into β-sheet nanofibers and induced hydrogelation. This was achieved by replacing flexible phenylalanine residue (F) by the rigid phenylglycine (Phg), resulting in a constrained analogue PhgEPhgK (Phg4), which positioned aromatic rings in an orientation favorable for aromatic stacking. Phg4 self-assembly into stable β-sheet ladders was facilitated by π-staking of aro...
We report the design, simulation, synthesis, and reversible self-assembly of nanofibrils using polyh...
Self-assembly is the spontaneous organization of small components into higher-order structures facil...
A great deal of effort has been invested in the design and characterization of systems which spontan...
Understanding peptide self-assembly mechanisms and stability of the formed assemblies is crucial for...
open access articleUnderstanding peptide self-assembly mechanisms and stability of the formed assemb...
Understanding peptide self-assembly mechanisms and stability of the formed assemblies is crucial for...
Understanding peptide self-assembly mechanisms and stability of the formed assemblies is crucial for...
Oligopeptide-based supramolecular hydrogels hold promise in a range of applications. The gelation of...
Self-assembled nanofibers are ubiquitous in nature and serve as inspiration for the design of supram...
Protein design studies using coiled coils have illustrated the potential of engineering simple pepti...
Self-assembling peptides are being applied both in the biomedical area and as building blocks in nan...
Peptides present complicated three-dimensional folds encoded in primary amino acid sequences of no m...
The molecular self-assembly of aromatic peptide amphiphiles has raised interest through the last dec...
This thesis was previously restricted to Strathclyde users only from 1st October 2017 until 15 Novem...
We report the design, simulation, synthesis, and reversible self-assembly of nanofibrils using polyh...
Self-assembly is the spontaneous organization of small components into higher-order structures facil...
A great deal of effort has been invested in the design and characterization of systems which spontan...
Understanding peptide self-assembly mechanisms and stability of the formed assemblies is crucial for...
open access articleUnderstanding peptide self-assembly mechanisms and stability of the formed assemb...
Understanding peptide self-assembly mechanisms and stability of the formed assemblies is crucial for...
Understanding peptide self-assembly mechanisms and stability of the formed assemblies is crucial for...
Oligopeptide-based supramolecular hydrogels hold promise in a range of applications. The gelation of...
Self-assembled nanofibers are ubiquitous in nature and serve as inspiration for the design of supram...
Protein design studies using coiled coils have illustrated the potential of engineering simple pepti...
Self-assembling peptides are being applied both in the biomedical area and as building blocks in nan...
Peptides present complicated three-dimensional folds encoded in primary amino acid sequences of no m...
The molecular self-assembly of aromatic peptide amphiphiles has raised interest through the last dec...
This thesis was previously restricted to Strathclyde users only from 1st October 2017 until 15 Novem...
We report the design, simulation, synthesis, and reversible self-assembly of nanofibrils using polyh...
Self-assembly is the spontaneous organization of small components into higher-order structures facil...
A great deal of effort has been invested in the design and characterization of systems which spontan...