Peptide or protein ligands can be used for molecular decoration to enhance the functionality of synthetic materials. However, some skepticism has arisen about the efficacy of such strategy in practical contexts since serum proteins largely adsorb. To address this issue, it is crucial to ascertain whether a chemically conjugated integrin-binding peptide is fully recognized by a cell even if partially covered by a physisorbed layer of serum protein; in more general terms, if competitive protein fragments physisorbed onto the surface are distinguishable from those chemically anchored to it. Here, we engraft an RGD peptide on poly-ε-caprolactone (PCL) surfaces and follow the dynamics of focal adhesion (FA) and cytoskeleton assembly at different...
The cell recognition of bioactive ligands immobilized on polymeric surfaces is strongly dependent on...
The cell recognition of bioactive ligands immobilized on polymeric surfaces is strongly dependent on...
The cell recognition of bioactive ligands immobilized on polymeric surfaces is strongly dependent on...
Peptide or protein ligands can be used for molecular decoration to enhance the functionality of synt...
Peptide or protein ligands can be used for molecular decoration to enhance the functionality of synt...
Peptide or protein ligands can be used for molecular decoration to enhance the functionality of synt...
Peptide or protein ligands can be used for molecular decoration to enhance the functionality of synt...
Peptide or protein ligands can be used for molecular decoration to enhance the functionality of synt...
Peptide or protein ligands can be used for molecular decoration to enhance the functionality of synt...
Peptide or protein ligands can be used for molecular decoration to enhance the functionality of synt...
Cells activate signalling through ligand-receptor bonds by sensing the mechanical properties of the ...
Cells activate signalling through ligand-receptor bonds by sensing the mechanical properties of the ...
Cells activate signalling through ligand-receptor bonds by sensing the mechanical properties of the ...
Cells activate signalling through ligand-receptor bonds by sensing the mechanical properties of the ...
Cells activate signalling through ligand-receptor bonds by sensing the mechanical properties of the ...
The cell recognition of bioactive ligands immobilized on polymeric surfaces is strongly dependent on...
The cell recognition of bioactive ligands immobilized on polymeric surfaces is strongly dependent on...
The cell recognition of bioactive ligands immobilized on polymeric surfaces is strongly dependent on...
Peptide or protein ligands can be used for molecular decoration to enhance the functionality of synt...
Peptide or protein ligands can be used for molecular decoration to enhance the functionality of synt...
Peptide or protein ligands can be used for molecular decoration to enhance the functionality of synt...
Peptide or protein ligands can be used for molecular decoration to enhance the functionality of synt...
Peptide or protein ligands can be used for molecular decoration to enhance the functionality of synt...
Peptide or protein ligands can be used for molecular decoration to enhance the functionality of synt...
Peptide or protein ligands can be used for molecular decoration to enhance the functionality of synt...
Cells activate signalling through ligand-receptor bonds by sensing the mechanical properties of the ...
Cells activate signalling through ligand-receptor bonds by sensing the mechanical properties of the ...
Cells activate signalling through ligand-receptor bonds by sensing the mechanical properties of the ...
Cells activate signalling through ligand-receptor bonds by sensing the mechanical properties of the ...
Cells activate signalling through ligand-receptor bonds by sensing the mechanical properties of the ...
The cell recognition of bioactive ligands immobilized on polymeric surfaces is strongly dependent on...
The cell recognition of bioactive ligands immobilized on polymeric surfaces is strongly dependent on...
The cell recognition of bioactive ligands immobilized on polymeric surfaces is strongly dependent on...