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Guided Bone Regeneration with a PDGF-BB-Ioaded Resorbable Membrane in the Dehisced Implant of the Beagle Dog
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  • Guided Bone Regeneration with a PDGF-BB-Ioaded Resorbable Membrane in the Dehisced Implant of the Beagle Dog
  • Guided Bone Regeneration with a PDGF-BB-Ioaded Resorbable Membrane in the Dehisced Implant of the Beagle Dog
저자명
권영혁,박준봉,허익,정종평,한수부,이승진,Kwon. Young-Hyuk,Park. Joon-Bong,Herr. Yeek,Chung. Chong-Pyung,Han. Soo-Bog,Lee. Seung-Jin
간행물명
대한치주과학회지
권/호정보
1998년|28권 3호|pp.431-451 (21 pages)
발행정보
대한치주과학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

4 beagle dogs aged over one and half years and weighed 15 to 16 Kg were utilized in this study. Experimental dehiscent defects were made in the mandibular edentulous area after removal of lower premolar. e-PTFE membrane resorbable membrane, and PDGF-BB-loaded resorbable membrane were covered at the dehiscent defects around the dental implants respectively. Animal was sacrificed at 1, 2, 3 months respectively. Non-decalicifed specimens were made and mutiple-stained for light microscopic study. The results were as follows: 1. Dehiscent defects around the implant installed in the beagle dog were an excellent defect model for studying guided bone regeneration. 2. Fibroblasts penetrated into expanded-PTFE membrane was observed and inflammatory cell infiltration was also observed around the membrane. 3. Resorbable membrane was degradaded and resorbed at 1 month after application to the dehiscent defect. Though multinucleated giant cells were observed adjacent to the membrane, that had no reverse effect on the boe regeneration. 4. PDGF-BB-Ioaded resorbable membrane was same capability as the resorbable membrane and e-PTFE membrane in the guided bone regeneration. 5. PDGF-BB-Ioaded resorbable membrane-applied site was better than resorbable membrane-applied site in the speed and maturity of bone formation. Within the above results, it was suggested that PDGF-BB-Ioaded resorbable membrane might have same bone regeneration capacity as nonresorbable membrane in the dehisced implant of the beagle dog and potentiality to use in human subjects.