Literature DB >> 33108325

Improvement of hydroxyapatite formation ability of titanium-based alloys by combination of acid etching and apatite nuclei precipitation.

Takeshi Yabutsuka1, Yasutaka Kidokoro2, Shigeomi Takai2.   

Abstract

The authors aimed to improve hydroxyapatite formation ability of Ti6Al4V, Ti-15Mo-5Zr-3Al alloy, Ti-12Ta-9Nb-6Zr-3V-O alloy (Gummetal®) and commercially pure Ti (cpTi) mesh by a combination of acid etching and apatite nuclei precipitation. Surfaces of specimens were etched with H2SO4 for pores formation on the specimens. Thus-etched specimens were soaked in an alkalinised simulated body fluid (SBF), which was adjusted at higher pH than that of conventional SBF and this solution was subsequently heated. By this treatment, apatite nuclei were precipitated in the pores of the specimens. By a soak in the conventional SBF to check hydroxyapatite formation ability, hydroxyapatite was covered the entire surfaces of the specimens within 1 day and high hydroxyapatite formation ability was successfully shown. The adhesion strength of the hydroxyapatite film formed in the above SBF test showed larger value as increasing the surface roughness of the specimens by adjusting the above acid etching condition depending on the kinds of Ti-based alloys. This is because the adhesion of the hydroxyapatite film occurred by the mechanical interlocking effect. In addition, this method showed shape selectivity of the materials because similar hydroxyapatite formation ability could be introduced to the cpTi mesh.

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Year:  2020        PMID: 33108325      PMCID: PMC8676002          DOI: 10.1049/iet-nbt.2020.0053

Source DB:  PubMed          Journal:  IET Nanobiotechnol        ISSN: 1751-8741            Impact factor:   1.847


  20 in total

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2.  The advantages of coated titanium implants prepared by radiofrequency sputtering from hydroxyapatite.

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3.  Enhancement of bonding strength by graded structure at interface between apatite layer and bioactive tantalum metal.

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Journal:  J Mater Sci Mater Med       Date:  2002-07       Impact factor: 3.896

4.  Surface modification of titanium by etching in concentrated sulfuric acid.

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5.  Fabrication of Bioactive Fiber-reinforced PEEK and MXD6 by Incorporation of Precursor of Apatite.

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6.  Positively charged bioactive Ti metal prepared by simple chemical and heat treatments.

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7.  In vivo and in vitro bioactivity of a "precursor of apatite" treatment on polyetheretherketone.

Authors:  Kazutaka Masamoto; Shunsuke Fujibayashi; Takeshi Yabutsuka; Tomoko Hiruta; Bungo Otsuki; Yaichiro Okuzu; Koji Goto; Takayoshi Shimizu; Yu Shimizu; Chihiro Ishizaki; Keito Fukushima; Toshiyuki Kawai; Makoto Hayashi; Kazuaki Morizane; Tomotoshi Kawata; Masashi Imamura; Shuichi Matsuda
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8.  Tissue, cellular and subcellular events at a bone-ceramic hydroxylapatite interface.

Authors:  M Jarcho; J F Kay; K I Gumaer; R H Doremus; H P Drobeck
Journal:  J Bioeng       Date:  1977-01

9.  Solutions able to reproduce in vivo surface-structure changes in bioactive glass-ceramic A-W.

Authors:  T Kokubo; H Kushitani; S Sakka; T Kitsugi; T Yamamuro
Journal:  J Biomed Mater Res       Date:  1990-06

10.  Green synthesis of titanium dioxide nanoparticles with volatile oil of Eugenia caryophyllata for enhanced antimicrobial activities.

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Journal:  IET Nanobiotechnol       Date:  2018-08       Impact factor: 1.847

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