Recreating the healing microenvironment is essential to regulate cell–material interactions and ensure the integration of biomaterials. To repair bone, such bioactivity can be achieved by mimicking its extracellular matrix (ECM) and by stimulating integrin and growth factor (GF) signaling. However, current approaches relying on the use of GFs, such as bone morphogenetic protein 2 (BMP-2), entail clinical risks. Here, a biomimetic peptide integrating the RGD cell adhesive sequence and the osteogenic DWIVA motif derived from the wrist epitope of BMP-2 is presented. The approach offers the advantage of having a spatial control over the single binding of integrins and BMP receptors. Such multifunctional platform is designed to incorporate 3,4-d...
RGD (arginine-glycine-aspartic acid) peptides have shown some promising abilities to promote the att...
Biointerface design that targets osteogenesis is a growing area of research with significant impli- ...
Engineered scaffolds for bone tissue regeneration are designed to promote cell adhesion, growth, pro...
Recreating the healing microenvironment is essential to regulate cell-material interactions and ensu...
Cell–material interactions are regulated by mimicking bone extracellular matrix on the surface of bi...
Human bone marrow mesenchymal stem cells (hBMSCs) commitment and differentiation are dictated by bio...
Biofunctionalization of metallic materials with cell adhesive molecules derived from the extracellul...
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...
Synergizing integrin and cell-membrane heparan sulfate proteoglycan signaling on biomaterials throug...
Biomaterials have evolved from mere bioinert substrates, required only to passively support cell adh...
Engineering artificial extracellular matrices, based on the biomimicry of the spatial distribution o...
Within the native microenvironment, extracellular matrix (ECM) components are thought to display a c...
Recent studies suggest that nanotopography can trigger colocalization of integrins and bone morphoge...
Implantable scaffolds mimicking the different physicochemical attributes of the extracellular matrix...
RGD (arginine-glycine-aspartic acid) peptides have shown some promising abilities to promote the att...
Biointerface design that targets osteogenesis is a growing area of research with significant impli- ...
Engineered scaffolds for bone tissue regeneration are designed to promote cell adhesion, growth, pro...
Recreating the healing microenvironment is essential to regulate cell-material interactions and ensu...
Cell–material interactions are regulated by mimicking bone extracellular matrix on the surface of bi...
Human bone marrow mesenchymal stem cells (hBMSCs) commitment and differentiation are dictated by bio...
Biofunctionalization of metallic materials with cell adhesive molecules derived from the extracellul...
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...
Synergizing integrin and cell-membrane heparan sulfate proteoglycan signaling on biomaterials throug...
Biomaterials have evolved from mere bioinert substrates, required only to passively support cell adh...
Engineering artificial extracellular matrices, based on the biomimicry of the spatial distribution o...
Within the native microenvironment, extracellular matrix (ECM) components are thought to display a c...
Recent studies suggest that nanotopography can trigger colocalization of integrins and bone morphoge...
Implantable scaffolds mimicking the different physicochemical attributes of the extracellular matrix...
RGD (arginine-glycine-aspartic acid) peptides have shown some promising abilities to promote the att...
Biointerface design that targets osteogenesis is a growing area of research with significant impli- ...
Engineered scaffolds for bone tissue regeneration are designed to promote cell adhesion, growth, pro...