ACS Applied Materials & Interfaces · 2020 · 38 citations · 27 references
Materials ScienceTissue EngineeringSynthetic Bone SubstituteDual-light-defined Broad-spectrum AntibacterialEngineeringTriple Osteogenic PropertiesBiomaterials DesignPure Ti ImplantsZinc OxideWound HealingBiomedical EngineeringPids TreatmentsMedicineBiomaterialsOrthopaedic SurgeryBiocompatible MaterialBioactive Material
The growing population of peri-implant diseases (PIDs) has become a public obsession, mainly due to the lack of antibacterial ability and osteogenic promotion of titanium (Ti) implants. Herein, inspired by tremella, we reported zinc oxide (ZnO)@collagen type I (Col-I)-decorated Ti for PIDs treatments. Compared with pure Ti implants, ZnO@Col-I-decorated Ti could be activated by a safe visible yellow light and showed excellent broad-spectrum antibacterial properties. The proliferation and osteogenic gene expression of bone marrow mesenchymal stem cells (BMSCs) indicated that the triple osseointegration of implants was realized through (I) the remarkedly improved surface hydrophilicity of ZnO@Col-I-decorated Ti, (II) the function of Col-I, and (III) the excellent near-infrared (NIR)-induced photothermal performance of ZnO. Collectively, the proposed dual-light-defined ZnO@Col-I coating was a promising implant surface modification system to provide customized treatments for each PID patient.
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Molecular mechanics of mineralized collagen fibrils in bone
Arun K. Nair, Alfonso Gautieri, Shu‐Wei Chang et al. · Nature Communications · 2013 · 504 citations · Full text