The Osteogenic Potential of Two Composite Graft Systems Using Osteogenin
- 1 December 1990
- journal article
- research article
- Published by Wiley in The Journal of Periodontology
- Vol. 61 (12) , 745-750
- https://doi.org/10.1902/jop.1990.61.12.745
Abstract
The purpose of this study was to determine the quantity of new bone formation in critical sized calvaria defects in rats treated with two composite graft systems. The systems consisted of either a combination of the bone inductive protein (osteogenin) plus type I collagen (Os + C) or the combination of osteogenin with coralline hydroxyapatite (Os + HA). Additional treatments consisted of coralline hydroxyapatite (HA) or untreated control defects. After 28 days the calvaria were recovered and processed for quantitative radiography (radiomorphometry) and histomorphometry. Histomorphometric results were based on quantitation of regenerated trabecular bone. Results indicated that the Os + C combination produced substantially more bone than the Os + HA, HA, or control groups (P < 0.05). Radiomorphometric assessment was based on the detection of radiopacity in the calvarial wounds. Due to the radiopaque property of HA, it was not possible to accurately quantitate the radiopacity of the regenerating bone from HA and host bone. Therefore, conclusions about the efficacy of the treatments must be derived from histomorphometric data. Results from histometric measurements of healing indicate that the Os + C combination has the greatest potential for regenerating calvarial bone defects. The potential for osteogenin in regenerating alveolar bone lost due to periodontal disease is suggested by these studies. J Periodontol 1990; 61:745–750.Keywords
This publication has 22 references indexed in Scilit:
- Dose-dependence of and Threshold for Optimal Bone Induction by Collagenous Bone Matrix and Osteogenin-enriched FractionCollagen and Related Research, 1988
- Bone Formation within Porous Hydroxylapatite Implants in Human Periodontal DefectsThe Journal of Periodontology, 1986
- Importance of geometry of the extracellular matrix in endochondral bone differentiation.The Journal of cell biology, 1984
- Distribution of bone inductive proteins in mineralized and demineralized extracellular matrixBiochemical and Biophysical Research Communications, 1984
- Extracellular bone matrix-derived growth factorExperimental Cell Research, 1982
- Bone Regeneration Within a Coralline Hydroxyapatite ImplantPlastic and Reconstructive Surgery, 1979
- Synthesis and fabrication of ?-tricalcium phosphate (whitlockite) ceramics for potential prosthetic applicationsJournal of Materials Science, 1979
- Collagenous bone matrix-induced endochondral ossification hemopoiesis.The Journal of cell biology, 1976
- Tissue ingrowth of replamineform implantsJournal of Biomedical Materials Research, 1975
- Hydroxyapatite formed from Coral Skeletal Carbonate by Hydrothermal ExchangeNature, 1974