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Original Articles

Chitosan-Based Nanocomposite Scaffolds for Tissue Engineering Applications

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Pages 273-278 | Received 02 Oct 2013, Accepted 31 Jan 2014, Published online: 17 Nov 2014

REFERENCES

  • Thomson, R.C.; et al. Hydroxyapatite fiber reinforced poly(hydroxy ester) foams for bone regeneration. Biomaterials 1998, 19 (21), 1935–1943.
  • Lanza, R.P.; Langer, R.S.; Vacanti, J. Principles of Tissue Engineering; 3rd ed.; Elsevier/Academic Press: Amsterdam, 2007; xxvii, 1307 p.
  • Ma, P.X. Scaffolds for tissue fabrication. Materials Today 2004, 7 (5), 30–40.
  • Sahoo, N.G.; Jung, Y.C.; Cho, J.W. Electroactive shape memory effect of polyurethane composites filled with carbon nanotubes and conducting polymer. Materials and Manufacturing Processes 2007, 22 (4), 419–423.
  • Bulasara, I.K.; Uppaluri, R.; Purkait, M.K. Manufacture of nickel-ceramic composite membranes in agitated electroless plating baths. Materials and Manufacturing Processes 2011, 26 (6), 862–867.
  • Ratner, B.D. Biomaterials Science: An Introduction to Materials in Medicine, 2nd ed.; Elsevier Academic Press: San Diego, CA, 2004; xii, 851 p.
  • Han, J.; et al. Alginate chitosan/hydroxyapatite polyelectrolyte complex porous scaffolds: Preparation and characterization. International Journal of Biological Macromolecules 2010, 46 (2), 199–205.
  • Wu, H.-D.; et al. Development of a chitosan-polyglutamate based injectable polyelectrolyte complex scaffold. Carbohydrate Polymers 2011, 85 (2), 318–324.
  • Zhang, R.; Ma, P.X. Biomimetic polymer/apatite composite scaffolds for mineralized tissue engineering. Macromolecular Bioscience 2004, 4 (2), 100–111.
  • Sultana, N.; Wang, M. PHBV/PLLA-based composite scaffolds containing nano-sized hydroxyapatite particles for bone tissue engineering. Journal of Experimental Nanoscience 2008, 3 (2), 121–132.
  • Sultana, N.; Wang, M. PHBV/PLLA-based composite scaffolds fabricated using an emulsion freezing/freeze-drying technique for bone tissue engineering: surface modification and in vitro biological evaluation. Biofabrication 2012, 4 (1), 015003.
  • Sultana, N.; Khan, T.H. In vitro degradation of PHBV scaffolds and nHA/PHBV composite scaffolds containing hydroxyapatite nanoparticles for bone tissue engineering. Journal of Nanomaterials 2012, 2012, 12.
  • Ma, P.X.; Zhang, R. Microtubular architecture of biodegradable polymer scaffolds. Journal of Biomedical Materials Research 2001, 56 (4), 469–477.
  • Sun, T.; Wang, L.-P.; Wang, M. (Ti, O)/Ti and (Ti, O, N)/Ti composite coatings fabricated via PIIID for the medical application of NiTi shape memory alloy. Journal of Biomedical Materials Research Part B: Applied Biomaterials 2011, 96B (2), 249–260.

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