TiO2 Nanonetwork on Rough Ti Enhanced Osteogenesis In Vitro and In Vivo

Author:

Yang W.E.123,Huang H.H.14567ORCID

Affiliation:

1. Department of Dentistry, National Yang Ming Chiao Tung University, Taipei, Taiwan

2. Department of Medical Research, Chung Shan Medical University Hospital, Taichung, Taiwan

3. Institute of Medicine, Chung Shan Medical University, Taichung, Taiwan

4. Institute of Oral Biology, National Yang Ming Chiao Tung University, Taipei, Taiwan

5. Department of Bioinformatics and Medical Engineering, Asia University, Taichung, Taiwan

6. Department of Medical Research, China Medical University Hospital, China Medical University, Taichung, Taiwan

7. Department of Stomatology, Taipei Veterans General Hospital, Taipei, Taiwan

Abstract

The objective in this study was to enhance osteogenic responses (in vitro and in vivo) to roughened titanium (Ti) dental implants through the formation of superhydrophilic TiO2 nanonetwork surface structure. Sandblasting and acid etching (SLA) was used to roughen the Ti surface. An electrochemical anodization process was then used to form a superhydrophilic TiO2 nanonetwork on the SLA Ti surfaces. The pore size of the nanonetwork structure ranged from a few nanometers to more than 100 nm, which is on the same scale as many biological species. Human bone marrow mesenchymal stem cells were used as an in vitro test model. The TiO2 nanonetwork structure was shown to have a significantly positive effect on hydrophilicity, protein adsorption, cell adhesion, cell migration, cell mineralization, and the gene and protein expression of osteogenic markers. The osseointegration of an anodized SLA screw-type Ti dental implant was investigated in vivo via implantation in the femur of New Zealand white rabbits for durations of 4 or 12 wk. The presence of a superhydrophilic surface TiO2 nanonetwork was shown to significantly enhance the bone-to-implant contact of the roughened SLA screw-type Ti dental implants. Overall, the proposed superhydrophilic TiO2 nanonetwork structure on the roughened SLA Ti surface proved highly effective in enhancing osteogenic responses in vitro and in vivo.

Funder

Ministry of Science and Technology, Taiwan

Publisher

SAGE Publications

Subject

General Dentistry

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