Bridging large defects in bone by demineralized bone matrix in the form of a powder. A radiographic, histological, and radioisotope-uptake study in rats.
- 1 September 1987
- journal article
- research article
- Published by Wolters Kluwer Health in Journal of Bone and Joint Surgery
- Vol. 69 (7) , 984-992
- https://doi.org/10.2106/00004623-198769070-00005
Abstract
Demineralized bone powder was used as an osteoinductive substance to bridge very large defects (more than 50 per cent of the total length of the bone) in one radius of each of thirty-three rats. An identical defect was produced in the contralateral radius of each animal for use as a control. The defect on the control side was left unbridged or was bridged by large chips of autologous bone or an autologous inlay graft. All rats showed formation of new bone throughout the length of the radial defect only on the side in which the demineralized bone powder had been implanted. The control side, in which an autologous graft in the form of chips or inlay had been implanted, showed resorption of the graft. The maximum rate of formation of bone occurred fifteen to twenty-one days after implantation of the demineralized bone powder. At thirty-five days, the experimental defect was fully bridged, forming solid bone, in 71 per cent of the rats, and the remaining 29 per cent showed bridging of 95.8 per cent of the length of the defect, with union on one side. Analysis of the sequential radiographs, technetium-99m scans, and histological findings showed that the formation of bone and bridging of the defect were superior on the side in which the demineralized bone powder had been implanted compared with the side in which pieces of autologous bone or an autologous inlay graft had been used.(ABSTRACT TRUNCATED AT 250 WORDS)This publication has 10 references indexed in Scilit:
- Importance of geometry of the extracellular matrix in endochondral bone differentiation.The Journal of cell biology, 1984
- The healing of segmental bone defects induced by demineralized bone matrix. A radiographic and biomechanical study.Journal of Bone and Joint Surgery, 1984
- Identification of a bone matrix-derived chemotactic factorCalcified Tissue International, 1983
- Dissociative extraction and reconstitution of extracellular matrix components involved in local bone differentiation.Proceedings of the National Academy of Sciences, 1981
- Role of fibronectin in collagenous matrix-induced mesenchymal cell proliferation and differentiation in vivoExperimental Cell Research, 1981
- APPLICATION OF THE BIOLOGICAL PRINCIPLE OF INDUCED OSTEOGENESIS FOR CRANIOFACIAL DEFECTSThe Lancet, 1981
- Autogenous cortical bone grafts in the reconstruction of segmental skeletal defects.Journal of Bone and Joint Surgery, 1980
- Synthesis and localization of fibronectin during collagenous matrix-mesenchymal cell interaction and differentiation of cartilage and bone in vivo.Proceedings of the National Academy of Sciences, 1980
- Repair of Bone Defects by Bone Inductive MaterialActa Orthopaedica, 1979
- Bone: Formation by AutoinductionScience, 1965