ChemBioChem · 2005 · 111 citations · 24 references
Tissue EngineeringEngineeringPeptide EngineeringCell AdhesionBiomaterials DesignBone RepairImproved BiocompatibilityBiomedical EngineeringOrthopaedic SurgeryTitanium Implant MaterialsBioactive MaterialRegenerative MedicinePhysiological Adhesion ProcessCell SurfaceMaterials ScienceSpecific Integrin ReceptorsImplantable DeviceMedicineBiomaterialsBiocompatible MaterialExtracellular Matrix
One key point for improving osseous integration of implants is to render them osteopromotive by specifically favoring the adhesion of osteoblasts. Mimicking the physiological adhesion process of osteoblasts to the extracellular matrix improves cell adhesion in vitro and results in improved and earlier osseous integration of implants in vivo. Our approach involves coating titanium implants with a tailor-made cyclic-RGD peptide, thus allowing them to bind to specific integrin receptors on the cell surface through multimeric phosphonates. The advantages of this very stable, new type of anchoring for practical application are presented.
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Martin Pfaff, Kirsten Tangemann, Beate Müller et al. · Journal of Biological Chemistry · 1994 · 533 citations · Full text
Proteinlipid Interaction, Peptide Engineering, Molecular Biology +17