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In Vitro Biomineralization of Glutaraldehyde Crosslinked Chitosan/Glutamic Acid Films

In Vitro Biomineralization of Glutaraldehyde Crosslinked Chitosan/Glutamic Acid Films
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摘要 In vitro biomineralization of glutaraldehyde crosslinked chitosan/glutamic acid films were studied. IR and ESCA (electron spectroscopy for chemical analysis) determinations confirm that chitosan and glutamic acid are successfully crosslinked by glutaraldehyde to form chitosan-glutamic acid surfaces. Composite films were soaked in saturated Ca(OH)2 solution for 8 d and then immersed in simulated body fluid (SBF) for more than 20 d. Morphological characterizations and structure of cal-cium phosphate coatings deposited on the films were studied by SEM, XRD, and EDAX (energy dispersive X-ray analysis). Initially, the treatment in SBF results in the formation of single-layer cal-cium phosphate particles over the film surface. As immersion time increases, further nucleation and growth produce the simulated calcium-carbonate hydroxyapatite coating. ICP results show Ca/P ratio of calcium phosphate coating is a function of SBF immersion time. The inducing of glutamic acid improves the biomineralization property of chitosan films. In vitro biomineralization of glutaraldehyde crosslinked chitosan/glutamic acid films were studied. IR and ESCA (electron spectroscopy for chemical analysis) determinations confirm that chitosan and glutamic acid are successfully crosslinked by glutaraldehyde to form chitosan-glutamic acid surfaces. Composite films were soaked in saturated Ca(OH)2 solution for 8 d and then immersed in simulated body fluid (SBF) for more than 20 d. Morphological characterizations and structure of cal-cium phosphate coatings deposited on the films were studied by SEM, XRD, and EDAX (energy dispersive X-ray analysis). Initially, the treatment in SBF results in the formation of single-layer cal-cium phosphate particles over the film surface. As immersion time increases, further nucleation and growth produce the simulated calcium-carbonate hydroxyapatite coating. ICP results show Ca/P ratio of calcium phosphate coating is a function of SBF immersion time. The inducing of glutamic acid improves the biomineralization property of chitosan films.
作者 冯芳
出处 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2009年第1期9-14,共6页 武汉理工大学学报(材料科学英文版)
基金 Funded by the Natural Science Foundation of Shanghai (No. 04ZR14087)
关键词 CHITOSAN BIOMINERALIZATION calcium phosphate glutamic acid chitosan biomineralization calcium phosphate glutamic acid
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参考文献13

  • 1Feng Fang,Liu Yu,Zhao Binyuan,Hu Ke’ao.In vitro biomineralization of glutaraldehyde crosslinked chitosan films[J].Journal of Wuhan University of Technology - Mater Sci Ed.2005(2)
  • 2Y YOKOGAWA,J PAZ REYES,M. R MUCALO,M TORIYAMA,Y KAWAMOTO,T SUZUKI,K NISHIZAWA,F NAGATA,T KAMAYAMA.Growth of calcium phosphate on phosphorylated chitin fibres[J].Journal of Materials Science: Materials in Medicine.1997(7)
  • 3Y. Abe,T. Kokubo,T. Yamamuro.Apatite coating on ceramics, metals and polymers utilizing a biological process[J].Journal of Materials Science: Materials in Medicine.1990(4)
  • 4M M Beppu,C C Santana.In Vitro Biomineralization of Chitosan[].Key Engineering Materials.2001
  • 5P Calvert.Biomimetic Mineralization: Processes and Prospects[].Materials Science and Engineering.1994
  • 6Varma H K,Yokogawa Y,Espinosa F F,et al.Porous calcium phosphate coating over phosphorylated chitosan film by a biomimetic method[].Biomaterials.1999
  • 7M M Beppu,C G Aimoli.Influence of Acetylation on in vitro Chitosan Membrane Biomineralization[].Key Engineering Materials.2004
  • 8Wan ACA,Khor E,Hastings GW.Preparation of a chitin-apatite composite by in situ precipitation onto porous chitin scaffolds[].Journal of Biomedical Materials Research.1998
  • 9Wan,A C A,Khor,E,Wong,J M,Hastings,G W.Promotion of Calcification on Carboxymethylchitin Discs[].Biomaterials.1996
  • 10Yokogawa Y,Reyes JP,Mucalo MR et al.Growth of calcium phosphate on phosphorylated chitin fibres[].Journal of Materials Science Materials in Electronics.1997

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