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Acta cir. bras ; 28(5): 340-345, May 2013. ilus, tab
Article in English | LILACS | ID: lil-674153

ABSTRACT

PURPOSE: Articular Cartilage has limited potential for self-repair and tissue engineering approaches attempt to repair articular cartilage by scaffolds. We hypothesized that the combined hydroxyapatite and zirconia stabilized yttria would enhance the quality of cartilage healing. METHODS: In ten New Zealand white rabbits bilateral full-thickness osteochondral defect, 4 mm in diameter and 3 mm depth, was created on the articular cartilage of the patellar groove of the distal femur. In group I the scaffold was implanted into the right stifle and the same defect was created in the left stifle without any transplant (group II). Specimens were harvested at 12 weeks after implantation, examined histologically for morphologic features, and stained immunohistochemically for type-II collagen. RESULTS: In group I the defect was filled with a white translucent cartilage tissue In contrast, the defects in the group II remained almost empty. In the group I, the defects were mostly filled with hyaline-like cartilage evidenced but defects in group II were filled with fibrous tissue with surface irregularities. Positive immunohistochemical staining of type-II collagen was observed in group I and it was absent in the control group. CONCLUSION: The hydroxyapatite/yttria stabilized zirconia scaffold would be an effective scaffold for cartilage tissue engineering.


Subject(s)
Animals , Male , Rabbits , Biocompatible Materials/therapeutic use , Cartilage, Articular/injuries , Durapatite/therapeutic use , Nanostructures/therapeutic use , Wound Healing/drug effects , Yttrium/therapeutic use , Zirconium/therapeutic use , Collagen Type II/analysis , Materials Testing , Reproducibility of Results , Regeneration/drug effects , Surface Properties , Time Factors , Treatment Outcome
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