Controlling and guiding cell behavior requires scaffolding materials capable of programming the three-dimensional (3-D) extracellular environment. In this study, we devised a new self-assembling peptide template for synthesizing nanofibrous hydrogels containing cell-responsive ligands. In particular, the insertion of a matrix metalloproteinase-2 (MMP-2) labile hexapeptide into the self-assembling building blocks of arginine-alanine-aspartate-alanine (RADA) was investigated. A series of peptides, varied by the position of the MMP-2 hexapeptide substrate and the length of RADA blocks, were prepared by parallel synthesis. Their self-assembling capabilities were characterized and compared by circular dichroism spectroscopy and dynamical mechani...
The nanofibrillar structures that underpin self-assembling peptide (SAP) hydrogels offer great poten...
AbstractSynthetic nanostructures based on self-assembling systems that aim to mimic natural extracel...
The applications of peptide-based materials are currently expanding, especially in the biomedical fi...
late for synthesizing nanofibrous hydrogels containing cell-responsive li-of peptides, varied by the...
Bioactive hydrogels formed by Michael-type addition reactions of end-functionalized poly(ethylene gl...
The tissue environment is exceptionally complex, with well-controlled biochemical communication occu...
The fabrication of artificial scaffolds that effectively mimic the host environment of the cell have...
We report here the design of a biomimetic nanofibrous hydrogel as a 3D-scaffold for anchorage-depend...
Self-assembling systems provide unique bottom up approaches for creating nano- to macro-sized materi...
(Arginine-alanine-aspartic acid-alanine)4 ((RADA)4) nanoscaffolds are excellent candidates for use a...
Self-assembling peptide-based nanofibers and hydrogels have been widely applied as cell delivery veh...
Nanomaterials are rich in potential, particularly for the formation of scaffolds that mimic the land...
Hydrogel scaffolds are at the forefront of tissue engineering research due to several distinct chara...
Self-assembling peptide hydrogels (SAPH) represent emerging cell cultures systems in several biomedi...
The nanofibrillar structures that underpin self-assembling peptide (SAP) hydrogels offer great poten...
AbstractSynthetic nanostructures based on self-assembling systems that aim to mimic natural extracel...
The applications of peptide-based materials are currently expanding, especially in the biomedical fi...
late for synthesizing nanofibrous hydrogels containing cell-responsive li-of peptides, varied by the...
Bioactive hydrogels formed by Michael-type addition reactions of end-functionalized poly(ethylene gl...
The tissue environment is exceptionally complex, with well-controlled biochemical communication occu...
The fabrication of artificial scaffolds that effectively mimic the host environment of the cell have...
We report here the design of a biomimetic nanofibrous hydrogel as a 3D-scaffold for anchorage-depend...
Self-assembling systems provide unique bottom up approaches for creating nano- to macro-sized materi...
(Arginine-alanine-aspartic acid-alanine)4 ((RADA)4) nanoscaffolds are excellent candidates for use a...
Self-assembling peptide-based nanofibers and hydrogels have been widely applied as cell delivery veh...
Nanomaterials are rich in potential, particularly for the formation of scaffolds that mimic the land...
Hydrogel scaffolds are at the forefront of tissue engineering research due to several distinct chara...
Self-assembling peptide hydrogels (SAPH) represent emerging cell cultures systems in several biomedi...
The nanofibrillar structures that underpin self-assembling peptide (SAP) hydrogels offer great poten...
AbstractSynthetic nanostructures based on self-assembling systems that aim to mimic natural extracel...
The applications of peptide-based materials are currently expanding, especially in the biomedical fi...