Peptide-based supramolecular hydrogels have been comprehensively investigated in biomaterial applications because of their unique bioactivity, biofunctionality, and biocompatible features. However, the presence of organic building blocks in peptide-based hydrogels often results in low mechanical stability. To expand their practical use and range of applications, it is necessary to develop the tool kit available to prepare bioinspired, peptide-based supramolecular hydrogels with improved mechanical stability. In this paper, we present an innovative electrostatic and cross-linking approach in which naphthyl-Phe-Phe-Cys (NapFFC) oligopeptides are combined with gold nanoparticles (AuNPs) and calcium ions (Ca<sup>2+</sup>) to produce peptide-bas...
Self-assembled supramolecular hydrogels offer great potential as biomaterials and drug delivery syst...
Hydrogels are used in a wide range of biomedical applications, including three-dimensional (3D) cell...
Over the last few years, hydrogels have been proposed for many biomedical applications, including dr...
It has been increasingly evident over the last few years that bioactive peptide hydrogels in conjuga...
Self-assembling peptide hydrogels (SAPH) represent emerging cell cultures systems in several biomedi...
Hydrogel scaffolds are at the forefront of tissue engineering research due to several distinct chara...
Abstract Supramolecular peptides exhibit obvious similarities with collagen fibers in terms of self-...
Short peptides are uniquely versatile building blocks for self-assembly. Supramolecular peptide asse...
Supramolecular polymer-based biomaterials play a significant role in current biomedical research. In...
Supramolecular nanofiber peptide assemblies had been used to construct functional hydrogel biomateri...
We report here the design of a biomimetic nanofibrous hydrogel as a 3D-scaffold for anchorage-depend...
Self-assembled nanofibers are ubiquitous in nature and serve as inspiration for the design of supram...
Supramolecular peptide-based hydrogels attract great attention in several fields, i.e., biomedicine,...
Self-assembled supramolecular hydrogels offer great potential as biomaterials and drug delivery syst...
Hydrogels are used in a wide range of biomedical applications, including three-dimensional (3D) cell...
Over the last few years, hydrogels have been proposed for many biomedical applications, including dr...
It has been increasingly evident over the last few years that bioactive peptide hydrogels in conjuga...
Self-assembling peptide hydrogels (SAPH) represent emerging cell cultures systems in several biomedi...
Hydrogel scaffolds are at the forefront of tissue engineering research due to several distinct chara...
Abstract Supramolecular peptides exhibit obvious similarities with collagen fibers in terms of self-...
Short peptides are uniquely versatile building blocks for self-assembly. Supramolecular peptide asse...
Supramolecular polymer-based biomaterials play a significant role in current biomedical research. In...
Supramolecular nanofiber peptide assemblies had been used to construct functional hydrogel biomateri...
We report here the design of a biomimetic nanofibrous hydrogel as a 3D-scaffold for anchorage-depend...
Self-assembled nanofibers are ubiquitous in nature and serve as inspiration for the design of supram...
Supramolecular peptide-based hydrogels attract great attention in several fields, i.e., biomedicine,...
Self-assembled supramolecular hydrogels offer great potential as biomaterials and drug delivery syst...
Hydrogels are used in a wide range of biomedical applications, including three-dimensional (3D) cell...
Over the last few years, hydrogels have been proposed for many biomedical applications, including dr...