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Chinese Journal of Microsurgery ; (6): 301-304, 2011.
Article in Chinese | WPRIM | ID: wpr-419665

ABSTRACT

ObjectiveTo evaluate the physicochemical properties and bicompatibility of carbon-nanotubes/hydroxypatite/chitosan scafflod for bone tissue engineering. MethodsMWCNT/n-HA/CS scaffolds wre generated by solution blending and freeze-drying technology.The morphology and composition of the scaffolds were analyzed by scanning electron microscopy, X-ray diffraction and Fourier transform infrared spectroscopy, after this, the results of which mixed CNTS in scaffolds were evaluated. The effects of MWCNT/n-HA/CS scaffolds on adherence and proliferation of rabbit bone marrow stroma cells were assessed by scaffolds surface seeding methods, and using scanning electron microscopy, MTT assay to observe their adhesion and proliferation on scaffolds.Results MWCNT/n-HA/CS scaffolds showed abundant homogeneous pores with (87.26%) porosity. 66% fracture strength of the scafflod was improved by MWCNT,and porosity decreased by 3%. Conclusion MWCNT/n-HA/CS scaffold can be prepared with solution blending and freeze drying process, which has fair poriness, good mechanical strength and tissue compatibility and can be applied as a bone graft material.

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