Publication Cover
Advances in Applied Ceramics
Structural, Functional and Bioceramics
Volume 110, 2011 - Issue 4: Cement and Concrete Research
75
Views
7
CrossRef citations to date
0
Altmetric
Original Article

Synthesis, phase transitions and cellular biocompatibility of nanophase alumina–hydroxyapatite composites

, , &
Pages 238-243 | Received 04 Jul 2009, Accepted 03 Mar 2011, Published online: 22 Nov 2013

References

  • Doremus RH: ‘Bioceramics’, J. Mater. Sci., 1992, 27, 285–297.
  • Evis Z, Doremus RH: ‘Effect of ZrF4 on hot-pressed hydroxyapatite/monoclinic zirconia composites’, Scr. Mater., 2007, 56, 53–56.
  • Evis Z, Sato M, Webster TJ: ‘Increased osteoblast adhesion on nanograined hydroxyapatite and partially stabilized zirconia composites’, J. Biomed. Mater. Res. A, 2006, 78A, 500–507.
  • Noda I, Masuda S, Kitano H, Ikeda J, Yoshihara Y, Mukai K, Shimotoso T:‘New approach to a cementless ceramic component for artificial knee joint’ in ‘Bioceramics’(, Brown S, et al.), 577–580; 2002, Stafa-Zurich, Trans Tech Publications.
  • Webster TJ, Ergun C, Doremus RH, Siegel RW, Bizios R: ‘Enhanced functions of osteoblasts on nanophase ceramics’, Biomaterials, 2000, 21, 1803–1810.
  • Li X, Koller G, Huang J, Silvio LD, Renton T, Esat M, Bonfield W, Edirisinghe M: ‘A novel jet-based nano-hydroxyapatite patterning technique for osteoblast guidance’, J. R. Soc. Interf., 2010, 7, 189–197.
  • Li X, Huang J, Edirisinghe M: ‘Novel patterning of nano-bioceramics: template-assisted electrohydrodynamic atomization spraying’, J. R. Soc. Interf., 2008, 5, 253–257.
  • Ahmad Z, Rasekh M, Edirisinghe M: ‘Electrohydrodynamic direct writing of biomedical polymers and composites’, Macromol. Mater. Eng., 2010, 295, 315–319.
  • Zamanian A, Moztarzadeh F, Kordestani S, Hesaraki S, Tahriri MR: ‘Novel calcium hydroxide/nanohydroxyapatite composites for dental applications: in vitro study’, Adv. Appl. Ceram., 2010, 109, 440–444.
  • Evis Z, Basar B, Sun ZP: ‘Diametral strength testing of hydroxyapatites doped with yttrium and fluoride’, Adv. Appl. Ceram., 2010, 109, 383–388.
  • Ji H, Marquis PM: ‘Sintering behavior of hydroxyapatite reinforced with 20 wt% Al2O3’, J. Mater. Sci., 1993, 28, 1941–1945.
  • Li J, Fartash B, Hermansson L: ’Hydroxyapatite–alumina composites and bone bonding’, Biomaterials, 1995, 16, 417–422.
  • Adolfsson E, Nygren M, Hermansson L: ‘Decomposition mechanisms in aluminum oxide apatite systems’, J. Am. Ceram. Soc., 1999, 82, 2909–2912.
  • Gautier S, Champion E, Bernache-Assollant D: ‘Toughening characterization in alumina platelet–hydroxyapatite matrix composites’, J. Mater. Sci., Mater. Med. 1999, 10, 533–540.
  • Jun YK, Kim WH, Kweon OK, Hong SH: ‘The fabrication and biochemical evaluation of alumina reinforced calcium phosphate porous implants’, Biomaterials, 2003, 24, 3731–3739.
  • Yang Y, Kim KH, Ong JL: ‘A review on calcium phosphate coatings produced using a sputtering process – an alternative to plasma spraying’, Biomaterials, 2005, 26, 327–337.
  • Kim HW, Koh YH, Seo SB, Kim HE: ‘Properties of fluoridated hydroxyapatite alumina biological composites densified with addition of CaF2’, Mater. Sci. Eng. C, 2003, C23, 515–521.
  • Evis Z: ‘Al3+ doped nano-hydroxyapatite and their sintering characteristics’, J. Ceram. Soc. Jpn, 2006, 114, 1001–1004.
  • Evis Z: ‘Reactions in hydroxylapatite–zirconia composites’, Ceram. Int., 2007, 33, 987–991.
  • Cullity BD: ‘Elements of X-ray diffraction’, 2nd edn; 1978, Reading, MA, Addison-Wesley.
  • Ji H, Marquis PM: ‚Preparation and characterization of Al2O3 reinforced hydroxyapatite’, Biomaterials, 1992, 13, 744–748.
  • Wei M, Evans JH, Bostrom T, Gröndahl L: ‘Synthesis and characterization of hydroxyapatite, fluoride-substituted hydroxyapatite, fluorapatite’, J. Mater. Sci., Mater. Med., 2003, 14, 311–320.
  • Evis Z, Doremus RH: ‘Coatings of hydroxyapatite–nanosize alpha alumina composites on Ti–6Al–4V’, Mater. Lett., 2005, 59, 3824–3827.
  • Young YA: ‘Implications of atomic substitutions and other structural details in apatites’, J. Dent. Res., 1974, 53, 193–203.
  • Narasaraju TSB, Phebe DE: ‘Some physico-chemical aspects of hydroxylapatite’, J. Mater. Sci., 1996, 31, 1–21.
  • Karlsson M, Palsgard E, Wilshaw PR, DiSilvio L: ‘Initial in vitro interaction of osteoblasts with nano-porous alumina’, Biomaterials, 2003, 24, 3039–3046.
  • Kim HW, Noh YJ, Koh YH, Kim HE, Kim HM: ‘Effect of CaF2 on densification and properties of hydroxyapatite–zirconia composites for biomedical applications’, Biomaterials, 2002, 23, 4113–4121.
  • Martin JY, Schwartz Z, Hummert TW, Schraub DM, Simpson J, Lankford J, Dean DD, Cochran DL, Boyan BD: ‘Effect of titanium surface roughness on proliferation, differentiation, and protein synthesis of human osteoblast-like cells (MG63)’, J. Biomed. Mater. Res., 1995, 29, 389–401.
  • Wang Y, Zhang S, Zeng X, Ma LL, Weng W, Yan W, Qian M: ‘Osteoblastic cell response on fluoridated hydroxyapatite coatings’, Acta Biomater., 2007, 3, 191–197.
  • Cheng K, Weng W, Wang H, Zhang S: ‘In vitro behavior of osteoblast-like cells on fluoridated hydroxyapatite coatings’, Biomaterials, 2005, 26, 6288–6295.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.