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In vitro bioactivity evaluation of titanium and niobium metals with different surface morphologies

Version 2 2024-06-03, 10:56
Version 1 2014-10-28, 08:36
journal contribution
posted on 2024-06-03, 10:56 authored by X Wang, Y Li, J Lin, Y Yamada, Peter HodgsonPeter Hodgson, C Wen
Current orthopaedic biomaterials research mainly focuses on designing implants that could induce controlled, guided and rapid healing. In the present study, the surface morphologies of titanium (Ti) and niobium (Nb) metals were tailored to form nanoporous, nanoplate and nanofibre-like structures through adjustment of the temperature in the alkali-heat treatment. The in vitro bioactivity of these structures was then evaluated by soaking the treated samples in simulated body fluid (SBF). It was found that the morphology of the modified surface significantly influenced the apatite-inducing ability. The Ti surface with a nanofibre-like structure showed better apatite-inducing ability than the nanoporous or nanoplate surface structures. A thick dense apatite layer formed on the Ti surface with nanofibre-like structure after 1 week of soaking in SBF. It is expected that the nanofibre-like surface could achieve good apatite formation in vivo and subsequently enhance osteoblast cell adhesion and bone formation.

History

Journal

Acta biomaterialia

Volume

4

Pagination

1530-1535

Location

Amsterdam, The Netherlands

ISSN

1742-7061

eISSN

1878-7568

Language

eng

Publication classification

C1 Refereed article in a scholarly journal

Copyright notice

2008, Elsevier B.V.

Issue

5

Publisher

Elsevier B.V.

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