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[Bone tissue engineering. Reconstruction of critical sized segmental bone defects in the ovine tibia].

Authors :
Reichert JC
Epari DR
Wullschleger ME
Berner A
Saifzadeh S
Nöth U
Dickinson IC
Schuetz MA
Hutmacher DW
Source :
Der Orthopade [Orthopade] 2012 Apr; Vol. 41 (4), pp. 280-7.
Publication Year :
2012

Abstract

Well-established therapies for bone defects are restricted to bone grafts which face significant disadvantages (limited availability, donor site morbidity, insufficient integration). Therefore, the objective was to develop an alternative approach investigating the regenerative potential of medical grade polycaprolactone-tricalcium phosphate (mPCL-TCP) and silk-hydroxyapatite (silk-HA) scaffolds.Critical sized ovine tibial defects were created and stabilized. Defects were left untreated, reconstructed with autologous bone grafts (ABG) and mPCL-TCP or silk-HA scaffolds. Animals were observed for 12 weeks. X-ray analysis, torsion testing and quantitative computed tomography (CT) analyses were performed. Radiological analysis confirmed the critical nature of the defects. Full defect bridging occurred in the autograft and partial bridging in the mPCL-TCP group. Only little bone formation was observed with silk-HA scaffolds. Biomechanical testing revealed a higher torsional moment/stiffness (p < 0.05) and CT analysis a significantly higher amount of bone formation for the ABG group when compared to the silk-HA group. No significant difference was determined between the ABG and mPCL-TCP groups. The results of this study suggest that mPCL-TCP scaffolds combined can serve as an alternative to autologous bone grafting in long bone defect regeneration. The combination of mPCL-TCP with osteogenic cells or growth factors represents an attractive means to further enhance bone formation.

Details

Language :
German
ISSN :
1433-0431
Volume :
41
Issue :
4
Database :
MEDLINE
Journal :
Der Orthopade
Publication Type :
Academic Journal
Accession number :
22476418
Full Text :
https://doi.org/10.1007/s00132-011-1855-x