Self-assembling peptide materials have been used extensively to mimic natural extracellular matrices (ECMs) by presenting bioactive epitopes on a synthetic matrix. Although this approach can facilitate a desired response from cells grown in the matrix, it lacks the capacity for spatial or temporal regulation of the presented signals. We describe here a photoresponsive, synthetic ECM using a supramolecular platform composed of peptide amphiphiles (PAs) that self-assemble into cylindrical nanofibers. A photocleavable nitrobenzyl ester group was included in the peptide backbone using a novel Fmoc-amino acid that is compatible with microwave-assisted solid-phase peptide synthesis. The placement of the photolabile group on the peptide backbone e...
Self-assembled peptide nanofibers form three-dimensional networks that are quite similar to fibrous ...
Spatiotemporal control of peptide nanofibre growth was achieved by photocleavage of a DNA-conjugated...
Natural extracellular matrix (ECM) consists of complex signals interacting with each other to organi...
Recent advances in understanding of cell-matrix interactions and the role of the extracellular matri...
Nanomaterials are rich in potential, particularly for the formation of scaffolds that mimic the land...
Materials engineered to elicit targeted cellular responses in regenerative medicine must display bio...
Natural extracellular matrix (ECM) consists of complex signals interacting with each other to organi...
Photochemical control of cell adhesion onto surfaces, a process commonly achieved with caged molecul...
ABSTRACT: We report the development of a photo-reversible cell culture substrate. We demonstrate the...
The extracellular matrix (ECM) in which the cells reside provides a dynamic and reversible environme...
Regenerative medicine is taking great advantage from the use of biomaterials in the treatments of a ...
Controlling the number of monomers in a supramolecular polymer has been a great challenge in program...
Post-assembly functionalization of supramolecular nanostructures has the potential to expand the ran...
Regenerative medicine is taking great advantage from the use of biomaterials in the treatments of a ...
Mechanical stress is a decisive factor for the differentiation, proliferation, and general behavior ...
Self-assembled peptide nanofibers form three-dimensional networks that are quite similar to fibrous ...
Spatiotemporal control of peptide nanofibre growth was achieved by photocleavage of a DNA-conjugated...
Natural extracellular matrix (ECM) consists of complex signals interacting with each other to organi...
Recent advances in understanding of cell-matrix interactions and the role of the extracellular matri...
Nanomaterials are rich in potential, particularly for the formation of scaffolds that mimic the land...
Materials engineered to elicit targeted cellular responses in regenerative medicine must display bio...
Natural extracellular matrix (ECM) consists of complex signals interacting with each other to organi...
Photochemical control of cell adhesion onto surfaces, a process commonly achieved with caged molecul...
ABSTRACT: We report the development of a photo-reversible cell culture substrate. We demonstrate the...
The extracellular matrix (ECM) in which the cells reside provides a dynamic and reversible environme...
Regenerative medicine is taking great advantage from the use of biomaterials in the treatments of a ...
Controlling the number of monomers in a supramolecular polymer has been a great challenge in program...
Post-assembly functionalization of supramolecular nanostructures has the potential to expand the ran...
Regenerative medicine is taking great advantage from the use of biomaterials in the treatments of a ...
Mechanical stress is a decisive factor for the differentiation, proliferation, and general behavior ...
Self-assembled peptide nanofibers form three-dimensional networks that are quite similar to fibrous ...
Spatiotemporal control of peptide nanofibre growth was achieved by photocleavage of a DNA-conjugated...
Natural extracellular matrix (ECM) consists of complex signals interacting with each other to organi...