Publication | Closed Access
Effect of Multi-nano-titania Film on Proliferation and Differentiation of Mouse Fibroblast Cell on Titanium
29
Citations
28
References
2008
Year
Tissue EngineeringEngineeringNanoporous MaterialNanotoxicologyBiomedical EngineeringAnodizingChemical EngineeringNanoengineeringMouse Fibroblast CellNanostructured Titania SurfaceMatrix BiologyMulti-nano-titania FilmMaterials ScienceNanobiotechnologyNanomanufacturingMulti-nanoporous Titania FilmCell BiologyNanomaterialsTitanium Dioxide MaterialsMedicineExtracellular MatrixMaterial Preparation
This investigation studies how nano-(, , and ) phases affect the formation of multi-nano-titania film by anodization and cathodic pretreatment. Nano-titanium hydrides and substoichiometric nano-titanium hydrides were formed during cathodization. A multi-nanoporous titania film was formed on the titanium during anodization. The nanohydrides are directly transformed to multi-nanoporous titania film by dissolution following anodization. Anodization with cathodic pretreatment not only yields a titanium surface with a multi-nanostructure, but also transforms the titanium surface into a nanostructured titania surface. Formation of nanohydrides by cathodization and oxidation by anodization are believed to promote biocompatibility and improve bone-to-interface contact, accelerating initial osseointegration and re-osseointegration.
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