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RESEARCH PAPER

Characterisation of Bioglass based foams developed via replication of natural marine sponges

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Pages S56-S62 | Received 09 Feb 2015, Accepted 27 May 2015, Published online: 02 Jul 2015

References

  • M. Stevenson: ‘Biomaterials for bone tissue engineering’, Mater. Today, 2008, 11, (5), 18–25.
  • M. Vallet-Regì: ‘Ordered mesoporous materials in the context of drug delivery systems and bone tissue engineering’, Chem. Eur. J., 2006, 12, (23), 5934–5943.
  • L. L. Hench, J. R. Jones and M. B. Fenn: ‘New materials and technologies for healthcare’, 2011, London, Imperial College Press.
  • L. C. Gerhardt and A. R. Boccaccini: ‘Bioactive glass and glass-ceramic scaffolds for bone tissue engineering’, Materials, 2010, 3, (7), 3867–3910.
  • J. M. Polak, L. L. Hench and P. Kemp: ‘Future strategies for tissue and organ replacement’, 2002, Imperial College Press, London.
  • L. L. Hench: ‘The story of Bioglass’, J. Mater. Sci. Mater. Med., 2006, 17, (11), 967–978.
  • R. J. Jones: ‘Review of bioactive glass: from Hench to hybrids’, Acta Biomater., 2013, 9, (11), 4457–4486.
  • G. Heness and B. Ben-Nissan: ‘Innovative bioceramics’, Mater. Forum, 2004, 27, 104–114.
  • A. Hoppe, N. S. Güldal and A. R. Boccaccini: ‘A review of the biological response to ionic dissolution products from bioactive glasses and glass-ceramic’, Biomaterials, 2011, 32, (11), 2757–2774.
  • L. L. Hench: ‘Bioceramics: from concept to clinic’, J. Am. Ceram. Soc., 1991, 74, (7), 1487–1510.
  • O. Peitl, E. D. Zanotto and L. L. Hench: ‘Highly bioactive P2O5-Na2O-CaO-SiO2 glass-ceramics’, J. Non-Cryst. Solids, 2001, 292, 115–126.
  • O. Peitl, E. D. Zanotto, S. C. Serbena and L. L. Hench: ‘Compositional and microstructural design of highly bioactive P2O5-Na2O-CaO-SiO2 glass-ceramics’, Acta Biomater., 2012, 8, (1), 321–332.
  • J. R. Jones, L. M. Ehrenfried and L. L. Hench: ‘Optimizing bioactive glass scaffolds for bone tissue engineering’, Biomaterials, 2006, 27, (7), 964–973.
  • J. E. Gough, J. R. Jones and L. L. Hench: ‘Nodule formation and mineralisation of human primary osteoblasts cultured on a porous bioactive glass scaffolds’, Biomaterials, 2004, 25, (11), 2039–2046.
  • J. R. Jones, O. Tsigkou, E. E. Coates, M. M. Stevens, J. M. Polak and L. L. Hench: ‘Extracellular matrix formation and mineralisation on a phosphate-free porous bioactive glass scaffold using primary human osteoblast (HOB) cells’, Biomaterials, 2007, 28, (9), 1653–1663.
  • Q. Z. Chen, I. D. Thompson and A. R. Boccaccini: ‘45S4 Bioglass-derived glass ceramic scaffolds for bone tissue engineering’, Biomaterials, 2006, 27, (11), 2414–2425.
  • Q. Chen, D. Mohn and W. J. Stark: ‘Optimization of Bioglass® scaffold fabrication process’, J. Am. Ceram. Soc., 2011, 94, 4184–4190.
  • A. Studart, U. T. Gonzenbach, E. Tervoort and L. J. Gauckler: ‘Processing routes to macroporous ceramics: a review’, J. Am. Ceram. Soc., 2006, 89, 1771–1789.
  • K. Rezwan, Q. Z. Chen, J. J. Blaker and A. R. Boccaccini: ‘Biodegradable and bioactive porous polymer/inorganic composite scaffolds for bone tissue engineering’, Biomaterials, 2006, 27, (18), 3413–3431.
  • J. J. Jones and L. L. Hench: ‘Regeneration of trabecular bone using porous ceramics’, Curr. Opin. Solid State Mater. Sci., 2003, 7, 301–307.
  • T. Fukasawa, Z. Y. Deng, M. Ando, T. Ohji and Y. Goto: ‘Pore structure of porous ceramics synthesized from water-based slurry by freeze-dry process’, J. Mater. Sci., 2001, 36, (10), 2523–2527.
  • K. F. Leong, C. M. Cheah and C. K. Chua: ‘Solid freeform fabrication of three-dimensional scaffolds for engineering replacement tissues and organs’, Biomaterials, 2003, 24, (13), 2363–2378.
  • E. A. Aguilar-Reyes, C. A. Leon-Patino, B. Jacinto-Diaz and L. P. Lefebvre: ‘Structural characterization and mechanical evaluation of bioactive glass 45S5 foams obtained by a powder technology approach’, J. Am. Ceram. Soc., 2012, 95, (12), 3776–3780.
  • E. A. Aguilar-Reyes, C. A. Leon-Patino, B. Jacinto-Diaz and L. P. Lefebvre: ‘Synthesis of 45S5 Bioglass® foams by a powder metallurgy approach’, Mater. Sci. Technol., 2010, 17, 70–77.
  • E. Cunningham, N. Dunne, S. Clarke, S. Y. Choi, G. Walker, R. Wilcox, R. E. Unger, F. Buchnan and C. J. Kirkpatrick: ‘Comparative characterization of 3-D hydroxyapatite scaffolds developed via replication of synthetic polymer foams and natural marine sponges’, J. Tissue Sci. Eng., 2011, S1:001, doi:10.4172/2157-7552.S1-001.
  • S. Yang, K. F. Leong, Z. Du and C. K. Chua: ‘The design of scaffolds for use in tissue engineering—traditional factors’, Tissue Eng., 2001, 7, (6), 679–689.
  • M. Mastrogiacomo, S. Scaglione, R. Martinetti, L. Dolcini, F. Beltrame, R. Cancedda and R. Quarto: ‘Role of scaffold internal structure on in vivo bone formation in macroporous calcium phosphate bioceramics’, Biomaterials, 2006, 27, 3230–3237.
  • Z. C. Chen, X. L. Zhang, K. Zhou, H. Cai and C. Q. Liu: ‘Novel fabrication of hierarchically porous hydroxyapatite scaffolds with refined porosity and suitable strength’, Adv. Appl. Ceram., 2015, 114, (3), 183–187.
  • G. Li, G. Liang, S. Zhao, K. Ma, W. Feng, D. Zhou and X. Liu: ‘Synthesis and characterisation of porous luminescent glass ceramic scaffolds containing europium for bone tissue engineering’, Adv. Appl. Ceram., 2015, 114, (3), 164–174.
  • R. Pronzato and R. Manconi: ‘Mediterranean commercial sponges: over 5000 years of natural history and cultural heritage’, Mar. Ecol., 2008, 29, 146–166.
  • L. L. Hench and J. Wilson: ‘Surface-active biomaterials’, Science, 1984, 226, 630–636.
  • L. Lefebvre, J. Chevaliera, R. Gremillarda, R. Zenatib, G. Tholleta, D. Bernache-Assolantc and A. Govinc: ‘Structural transformations of bioactive glass 45S5 with thermal treatments’, Acta Biomater., 2007, 55, 3305–3313.
  • D. Clupper D, J. J. Mecholsky, G. P. LaTorre and D. C. Greenspan: ‘Sintering temperature effects on the in vitro bioactive response of tape cast and sintered bioactive glass-ceramic in TRIS buffer’, J. Biomed. Mater. Res., 2001, 57, 532–540.
  • L. Lefebvre, L. Gremillard, J. Chevaliera, R. Zenatib and D. Bernache-Assolantc: ‘Sintering behaviour of 45S5 bioactive glass’, Acta Biomater., 2008, 26, 1665–1674.
  • A. Philippart, A. R. Boccaccini, C. Fleck, D. W. Schubert and J. A. Roether: ‘Toughening and functionalization of bioactive ceramic and glass bone scaffolds by biopolymer coatings and infiltration: a review of the last 5 years’, Expert Rev. Med. Devices, 2015, 12, 93–111.
  • A. R. Boccaccini, Q. Chen, L. Lefebvre, L. Gremillard and J. Chevalier: ‘Sintering, crystallization and biodegradation behavior of Bioglass®-derived glass-ceramic’, Faraday Discuss., 2007, 136, 27–44.