Surface modification stands out as a versatile technique to create instructive biomaterials that are able to actively direct stem cell fate. Chemical functionalization of titanium has been used in this work to stimulate the differentiation of human mesenchymal stem cells (hMSCs) into the osteoblastic lineage, by covalently anchoring a synthetic double-branched molecule (PTF) to the metal that allows a finely controlled presentation of peptidic motifs. In detail, the effect of the RGD adhesive peptide and its synergy motif PHSRN is studied, comparing a random distribution of the two peptides with the chemically-tailored disposition within the custom made synthetic platform, which mimics the interspacing between the motifs observed in fibrone...
The fixation of cementless endoprostheses requires excellent fixation at the bone implant interface....
Synergizing integrin and cell-membrane heparan sulfate proteoglycan signaling on biomaterials throug...
Synergizing integrin and cell-membrane heparan sulfate proteoglycan signaling on biomaterials throug...
Surface modification stands out as a versatile technique to create instructive biomaterials that are...
Surface modification stands out as a versatile technique to create instructive biomaterials that are...
Biofunctionalization of metallic materials with cell adhesive molecules derived from the extracellul...
Cell–material interactions are regulated by mimicking bone extracellular matrix on the surface of bi...
In this communication we report that anchoring avß3 or a5ß1 integrin-selective RGD peptidomimetics t...
In this communication we report that anchoring avß3 or a5ß1 integrin-selective RGD peptidomimetics t...
Interaction between the surface of implants and biological tissues is a key aspect of biomaterials r...
The commitment and differentiation of human mesenchymal stem cells (hMSCs) are guided by bioactive m...
Interaction between the surface of implants and biological tissues is a key aspect of biomaterials r...
AbstractInteraction between the surface of implants and biological tissues is a key aspect of biomat...
Interaction between the surface of implants and biological tissues is a key aspect of biomaterials r...
The commitment and differentiation of human mesenchymal stem cells (hMSCs) are guided by bioactive m...
The fixation of cementless endoprostheses requires excellent fixation at the bone implant interface....
Synergizing integrin and cell-membrane heparan sulfate proteoglycan signaling on biomaterials throug...
Synergizing integrin and cell-membrane heparan sulfate proteoglycan signaling on biomaterials throug...
Surface modification stands out as a versatile technique to create instructive biomaterials that are...
Surface modification stands out as a versatile technique to create instructive biomaterials that are...
Biofunctionalization of metallic materials with cell adhesive molecules derived from the extracellul...
Cell–material interactions are regulated by mimicking bone extracellular matrix on the surface of bi...
In this communication we report that anchoring avß3 or a5ß1 integrin-selective RGD peptidomimetics t...
In this communication we report that anchoring avß3 or a5ß1 integrin-selective RGD peptidomimetics t...
Interaction between the surface of implants and biological tissues is a key aspect of biomaterials r...
The commitment and differentiation of human mesenchymal stem cells (hMSCs) are guided by bioactive m...
Interaction between the surface of implants and biological tissues is a key aspect of biomaterials r...
AbstractInteraction between the surface of implants and biological tissues is a key aspect of biomat...
Interaction between the surface of implants and biological tissues is a key aspect of biomaterials r...
The commitment and differentiation of human mesenchymal stem cells (hMSCs) are guided by bioactive m...
The fixation of cementless endoprostheses requires excellent fixation at the bone implant interface....
Synergizing integrin and cell-membrane heparan sulfate proteoglycan signaling on biomaterials throug...
Synergizing integrin and cell-membrane heparan sulfate proteoglycan signaling on biomaterials throug...