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ORIGINAL ARTICLE

Cytocompatibility of PLA/Nano-HA composites for interface fixation

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Pages 1122-1126 | Received 16 Dec 2014, Accepted 15 Jan 2015, Published online: 13 Mar 2015

References

  • Ham MF. 1995. In vitro study of biodegradation of a Co-Cr alloy using a human cell culture model. J Biomater Sci Polym Ed. 6:809–814.
  • Huang J, Xiong J, Liu J, Zhu W, Wang D. 2013. Investigation of the in vitro degradation of a novel polylactide/Nanohydroxyapatite composite for artificial bone. J Nanomat.2013:1–11.
  • Lie Shen,Hui Yang,Jia Ying, Qiao F, Peng M. 2009. Preparation and mechanical properties of carbon fiber reinforced hydroxyapatite/polylactide biocomposites. J Mater Sci Mater Med. 20:2259–2265.
  • Neuendorf RE, Saiz E, Tomsia AP, Ritchie RO. 2008. Adhesion between biodegradable polymers and hydroxyaptite: relevance to synthetic bone-1ike materials and tissue engineering scaffolds. Acta Biomater. 4:1288–1296.
  • Sultana N, Wang M. 2012. 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. 4:15–24.
  • Tang Z, Cao J, Wen N, Wang HB, Zhang ZW, Liu ZQ, et al. 2012. Posterolateral spinal fusion with nano- hydroxyapatite- collagen/PLA composite and autologous adipose-derived mesenchymal stem cells in a rabbit model. J Tissue Eng Regen Med. 6:325–336.
  • Zhu W, Chen K, Lu W, Sun Q, Peng L, Fen W, et al. 2014. In vitro study of nano-HA/PLLA composite scaffold for rabbit BMSC differentiation under TGF-β1 induction. In Vitro Cell Dev Biol Anim. 50:214–220.
  • Zhu W, Huang J, Lu W, Sun Q, Peng L, Fen W, et al. 2013. Performance test of Nano-HA/PLLA composites for interface fixation. Artif Cells Nanomed Biotechnol. 42:331–335.
  • Zhu W, Lu W, Zhang X, Cai Z, Liu H, Peng L, et al. 2012. Nano- hydroxyapatite/fibrin glue/recombinant human osteogenic protein-1 artificial bone for repair of bone defect in an animal model. Micro & Nano Letters. 7:467–471.
  • Zhu W, Xiao J, Wang D, Liu J, Xiong J, Liu L, et al. 2008. Experimental study of nano-HA artificial bone with different pore sizes for repairing the radial defect. Int Orthop. 33:567–571.
  • Zhu W, Zhang X, Wang D, Lu W, Ou Y, Han Y, et al. 2010. Experimental study on the conduction function f nano-hydroxyapatite artificial bone. Micro & Nano Letters. 1:19–27.

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