Objective To investigate the effect of pure titanium surface of large diameter TiO2 nanotubes modified by RGD peptide on the adhesion and proliferation of MG63 osteoblasts. to provide theoretical proof for developing titani⁃ um implants. Methods Commercially pure titanium discs were divided into four groups and treated with SLA to obtain a microrough surface (SLA group). Then, nanotubes were imposed on this microrough surface by anodization (SLA+ 80 group). The surface was then modified by dopamine (DOPA) (DOPA Group), after which bioactive RGD peptide layers were generated on the TiO2 nanotube surfaces via electrochemical and molecular self⁃assembly techniques (RGD group). The titanium surface morphology and elemental composition of e...
Studies have shown that anodically grown TiO2 nanotubes (TNTs) exhibit excellent biocompatibility. ...
The aim of this study was to evaluate the osseointegration of implants which were surface-treated wi...
Titanium (Ti) and its alloys are amongst the most commonly-used biomaterials in orthopedic and denta...
The purpose of this research was to characterize an Arg-Gly-Asp (RGD) peptide immobilized on TiO2 na...
Although titanium (Ti) alloys have been widely used as implant materials, the bioinertness of pristi...
Titanium and titanium alloys exhibit a unique combination of strength and biocompatibility, which en...
The lack of osseointegration and implant-related infections are two major complications leading to f...
The lack of osseointegration and implant-related infections are two major complications leading to f...
This work reports on the synthesis of titanium bone implants functionalized with nanoparticles (NPs)...
The titanium dioxide (TiO2) nanotube surface enables significantly accelerated osteoblast adhesion a...
The bio-inertness of titanium (Ti) and accompanying severe inflammation can extremely inhibit the co...
The life expectancy of human beings has increased significantly over the last twenty years. With thi...
The biological response to implant materials has been a topic of extensive research and discussion t...
[[abstract]]Titanium oxide (TiO 2) surface layers with various surface nanostructures (nanotubes and...
[[abstract]]Titanium oxide (TiO 2) surface layers with various surface nanostructures (nanotubes and...
Studies have shown that anodically grown TiO2 nanotubes (TNTs) exhibit excellent biocompatibility. ...
The aim of this study was to evaluate the osseointegration of implants which were surface-treated wi...
Titanium (Ti) and its alloys are amongst the most commonly-used biomaterials in orthopedic and denta...
The purpose of this research was to characterize an Arg-Gly-Asp (RGD) peptide immobilized on TiO2 na...
Although titanium (Ti) alloys have been widely used as implant materials, the bioinertness of pristi...
Titanium and titanium alloys exhibit a unique combination of strength and biocompatibility, which en...
The lack of osseointegration and implant-related infections are two major complications leading to f...
The lack of osseointegration and implant-related infections are two major complications leading to f...
This work reports on the synthesis of titanium bone implants functionalized with nanoparticles (NPs)...
The titanium dioxide (TiO2) nanotube surface enables significantly accelerated osteoblast adhesion a...
The bio-inertness of titanium (Ti) and accompanying severe inflammation can extremely inhibit the co...
The life expectancy of human beings has increased significantly over the last twenty years. With thi...
The biological response to implant materials has been a topic of extensive research and discussion t...
[[abstract]]Titanium oxide (TiO 2) surface layers with various surface nanostructures (nanotubes and...
[[abstract]]Titanium oxide (TiO 2) surface layers with various surface nanostructures (nanotubes and...
Studies have shown that anodically grown TiO2 nanotubes (TNTs) exhibit excellent biocompatibility. ...
The aim of this study was to evaluate the osseointegration of implants which were surface-treated wi...
Titanium (Ti) and its alloys are amongst the most commonly-used biomaterials in orthopedic and denta...