Poly(ε-caprolactone)/nano fluoridated hydroxyapatite scaffolds for bone tissue engineering: in vitro degradation and biocompatibility study
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作者:
Johari, N.
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Isfahan Univ Technol, Biomat Res Grp, Dept Mat Engn, Esfahan 8415683111, IranIsfahan Univ Technol, Biomat Res Grp, Dept Mat Engn, Esfahan 8415683111, Iran
Johari, N.
[1
]
Fathi, M. H.
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Isfahan Univ Technol, Biomat Res Grp, Dept Mat Engn, Esfahan 8415683111, IranIsfahan Univ Technol, Biomat Res Grp, Dept Mat Engn, Esfahan 8415683111, Iran
Fathi, M. H.
[1
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Golozar, M. A.
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Isfahan Univ Technol, Biomat Res Grp, Dept Mat Engn, Esfahan 8415683111, IranIsfahan Univ Technol, Biomat Res Grp, Dept Mat Engn, Esfahan 8415683111, Iran
Golozar, M. A.
[1
]
Erfani, E.
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Univ Tehran Med Sci, Cellular & Mol Res Ctr, Dept Med Biotechnol, Tehran, IranIsfahan Univ Technol, Biomat Res Grp, Dept Mat Engn, Esfahan 8415683111, Iran
Erfani, E.
[2
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Samadikuchaksaraei, A.
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Univ Tehran Med Sci, Cellular & Mol Res Ctr, Dept Med Biotechnol, Tehran, Iran
Univ London Imperial Coll Sci Technol & Med, Dept Chem Engn, Ctr Proc Syst Engn, Biol Syst Engn Lab, London SW7 2AZ, EnglandIsfahan Univ Technol, Biomat Res Grp, Dept Mat Engn, Esfahan 8415683111, Iran
Samadikuchaksaraei, A.
[2
,3
]
机构:
[1] Isfahan Univ Technol, Biomat Res Grp, Dept Mat Engn, Esfahan 8415683111, Iran
[2] Univ Tehran Med Sci, Cellular & Mol Res Ctr, Dept Med Biotechnol, Tehran, Iran
[3] Univ London Imperial Coll Sci Technol & Med, Dept Chem Engn, Ctr Proc Syst Engn, Biol Syst Engn Lab, London SW7 2AZ, England
In this study, biodegradation and biocompatibility of novel poly(epsilon-caparolactone)/nano fluoridated hydroxyapatite (PCL-FHA) scaffolds were investigated. The FHA nanopowders were prepared via mechanical alloying method and had a chemical composition of Ca-10 (PO4)(6)OH2-x F (x) (where x values were selected equal to 0.5 and 2.0). In order to fabricate PCL-FHA scaffolds, 10, 20, 30 and 40 wt% of the FHA were added to the PCL. The PCL-FHA scaffolds were produced by the solvent casting/particulate leaching using sodium chloride particles (with diameters of 300-500 mu m) as the porogen. The phase structure, microstructure and morphology of the scaffolds were evaluated using X-ray diffraction, Fourier transform infrared spectroscopy and scanning electron microscopy techniques. Porosity of the scaffolds was measured using the Archimedes' Principle. In vitro degradation of PCL-FHA scaffolds was studied by incubating the samples in phosphate buffered saline at 37A degrees C and pH 7.4 for 30 days. Moreover, biocompatibility was evaluated by MTT assay after seeding and culture of osteoblast-like cells on the scaffolds. Results showed that the osteoblast-like cells attached to and proliferated on PCL-FHA and increasing the porosity of the scaffolds increased the cell viability. Also, degradation rate of scaffolds were increased with increasing the fluorine content in scaffolds composition.