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1.
The Journal of the Korean Academy of Periodontology ; : 97-102, 2008.
Article Dans Coréen | WPRIM | ID: wpr-105073

Résumé

PURPOSE: Periodontal intrabony defects have great deal of importance since they contribute to the development of periodontal disease. Current treatment regimens for intrabony defects involve grafting of numerous bony materials, GTR using biocompatible barriers, and biomodification of root surface that will encourage the attachment of connective tissue. Xenograft using deproteinized bovine bone particles seems to be very convenient to adjust because it doesn't require any donor sites or imply the danger of cross infections. These particles are similar to human cancellous bone in structure and turned out to be effective in bone regeneration in vivo. We here represent the effectiveness of grafting deproteinized bovine bone particles in intrabony defect and furcation involvements that have various numbers of bony walls. MATERIALS AND METHODS: Open flap debridement was done to remove all root accretions and granulation tissue from the defects within persisting intrabony lesions demonstrating attachment loss of over 6mm even 3 months after nonsurgical periodontal therapy have been completed. Deproteinized bovine bone particles(BBP(R), Oscotec, Seoul) was grafted in intrabony defects to encourage bone regeneration. Patients were instructed of mouthrinses with chlorohexidine-digluconate twice a day and to take antibiotics 2-3 times a day for 2 weeks. They were check-up regularly for oral hygiene performance and further development of disease. Probing depth, level of attachment and mobility were measured at baseline and 6 months after the surgery. The radiographic evidence of bone regenerations were also monitored at least for 6 months. CONCLUSION: In most cases, radio-opacities increased after 6 months. 2- and 3-wall defects showed greater improvements in pocket depth reduction when compared to 1-wall defects. Class I & II furcation involvements in mandibular molars demonstrated the similar results with acceptable pocket depth both horizontally and vertically comparable to other intrabony defects. Exact amount of bone gain could not be measured as the re-entry procedure has not been available. With in the limited data based on our clinical parameter to measure pocket depth reduction following BBP(R) grafts, it was comparable to the results observed following other regeneration techniques such as GTR.


Sujets)
Humains , Antibactériens , Régénération osseuse , Tissu conjonctif , Infection croisée , Débridement , Tissu de granulation , Molaire , Hygiène buccodentaire , Maladies parodontales , Régénération , Donneurs de tissus , Transplantation hétérologue , Transplants
2.
The Journal of the Korean Academy of Periodontology ; : 125-136, 2007.
Article Dans Coréen | WPRIM | ID: wpr-65886

Résumé

Periodontal regenerative therapy and tissue engineering on defects destructed by severe periodontitis need maintaining of space, which provides the environment for cell migration, proliferation and differentiation. Application of bone grafts may offer this environment in periodontal defects. This study evaluated bone graft materials, MBCP(R) and Algipore(R), in surgically created 1-wall periodontal intrabony defects of minipigs by histological analysis. Critical sized(4mmX4mm), one wall periodontal intrabony defects were surgically produced at the proximal aspect of mandibular premolars in either right and left jaw quadrants in four minipigs. The control group was treated with debridement alone, and experimental group was treated with debridement and MBCP(R) and Algipore(R) application. The healing processes were histologically observed after 8 weeks and the results were as follows. 1. In the control group, limited new bone formation was observed. 2. In MBCP group, more new bone formation was observed compared to other groups. 3. Histologically, dispersed mixture of new bone, biomaterial particles and connective tissue were shown and osteoblasts, osteoclasts and new vessels were present in this area. 4. Defects with Algipore showed limited new bone formation and biomaterial particles capsulated by connective tissue. 5. Histologically, lots of osteoclasts were observed around the biomaterial but relatively small numbers of osteblasts were shown. Within the limitation to this study protocol, MBCP(R) application in 1-wall intrabony defect enhanced new bone formation rather than Algipore(R) application.


Sujets)
Prémolaire , Calcium , Mouvement cellulaire , Tissu conjonctif , Débridement , Mâchoire , Ostéoblastes , Ostéoclastes , Ostéogenèse , Parodontite , Porc miniature , Ingénierie tissulaire , Transplants
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