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Poly(alpha-hydroxy acids) 제제 생분해성 차폐막의 치주조직 재생유도 능력에 관한 조직학적 장기 관찰

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Authors

류인철; 구영; 정종평; 한수부; 최상묵

Issue Date
1997
Publisher
대한치주과학회
Citation
대한치주과학회지 1997;27:.633-645
Keywords
guided tissue regeneration:barriersynthetic biodegradable membranecopolymer of lactide and glycolidebiocompatibilityresorptionperiodontal defect
Abstract
The recent trend of research and development on guided tissue regeneration focuses on the biodegradable membranes, which eliminate the need for subsequent surgical removal. They have demonstrated significant and equivalent clinical improvements to the ePTFE membranes. This study evaluate guided tissue regeneration wound healing in surgically induced intrabony periodontal defects following surgical treatment with a synthetic biodegradable membranes, made from a copolymer of glycolide and lactide, in 8 beagle dogs. After full thickeness flap reflection, exposed buccal bone of maxillary and mandibular canine and premolar was removed surgically mesiodistally and occlusoapically at in size for preparation of periodontal defects. In experimental sites a customized barrier was formed and fitted to cover the defect. Flap was replaced slightly coronal to CEJ and sutured. Plaque control program was initiated and maintained until completion of the study. In 4, 8, 16 and 24 weeks after surgery, the animals were sacrificed and then undecalcified specimens were prepared for histologic evaluation. Histologic examination indicated significant periodontal regeneration characterized by new connective tissue attachment, cementum formation and bone formation. These membranes showed good biocompatibility throughout experiodontal period. The barriers had been completely resorbed with no apparent adverse effect on periodontal wound healing at 24 weeks. These results implicated that present synthetic biodegradable membrane facilitated guided tissue regeneration in periodontal defect.
ISSN
0250-3352
Language
Korean
URI
http://uci.or.kr/G100:I100-KOI(KISTI1.1003/JNL.JAKO199721452720426)

https://hdl.handle.net/10371/47901
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