首页> 外文期刊>Journal of Periodontology >Effect of surgical implantation of recombinant human bone morphogenetic protein-2 in a bioabsorbable collagen sponge or calcium phosphate putty carrier in intrabony periodontal defects in the baboon.
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Effect of surgical implantation of recombinant human bone morphogenetic protein-2 in a bioabsorbable collagen sponge or calcium phosphate putty carrier in intrabony periodontal defects in the baboon.

机译:重组人骨形态发生蛋白2手术植入狒狒骨内牙周缺损的生物可吸收胶原海绵或磷酸钙腻子载体中的作用。

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BACKGROUND: Recombinant human bone morphogenetic protein-2 (rhBMP-2) in a proper carrier has been shown to induce clinically relevant bone formation for several oral/maxillofacial and periodontal indications and to stimulate regeneration of the periodontal attachment. The objective of this study is to evaluate regeneration of alveolar bone, cementum, periodontal ligament, and associated root resorption and ankylosis following surgical implantation of rhBMP-2 in an absorbable collagen sponge (ACS) or a calcium phosphate putty (alphaBSM) carrier in 3-wall intrabony periodontal defects in the baboon. METHODS: rhBMP-2/ACS and rhBMP-2/alphaBSM were implanted in surgically produced, maxillary and mandibular, large size, 3-wall intrabony defects in 4 baboons. Contralateral jaw quadrants were implanted with buffer/ACS, buffer/ alphaBSM, or served as sham-operated surgical controls. Treatments were allocated to left and right, maxillary and mandibular, jaw quadrants following a randomization schedule. Four months following implantation, block biopsies of defect sites were obtained, processed, and subjected to histologic and histometric analysis. RESULTS: Defect sites receiving rhBMP-2/ACS and rhBMP-2/alphaBSM demonstrated significantly greater regeneration than controls. No significant differences were observed between defect sites receiving rhBMP-2/ACS or rhBMP-2/alphaBSM regarding epithelial migration and connective tissue attachment and new bone formation. However, rhBMP-2/ACS supported significantly greater new cementum formation. Ankylosis or root resorption were not observed. CONCLUSIONS: The results of this study support the use of rhBMP-2 to enhance periodontal regeneration of intrabony periodontal defects. While this novel technology holds promise, refinement in carrier systems may provide the key to enhancement of the regenerative potential.
机译:背景:适当的载体中的重组人骨形态发生蛋白2(rhBMP-2)已显示出可在几种口腔/颌面部和牙周适应症中诱导临床相关的骨形成并刺激牙周附着的再生。这项研究的目的是评估将rhBMP-2外科植入可吸收性胶原海绵(ACS)或磷酸钙腻子(alphaBSM)载体中后3的牙槽骨,牙骨质,牙周膜的再生以及相关的根吸收和强直性壁的狒狒内壁骨内牙周缺损。方法:将rhBMP-2 / ACS和rhBMP-2 / alphaBSM植入4只狒狒的外科手术产生的上颌和下颌大尺寸3壁骨内缺损中。对侧颌骨象限植入缓冲液/ ACS,缓冲液/ alphaBSM,或作为假手术的手术对照。按照随机分配方案,将治疗分配到左,右,上颌和下颌,下颌象限。植入后四个月,获得缺陷部位的活检切片,进行处理,并进行组织学和组织学分析。结果:缺陷位点接受rhBMP-2 / ACS和rhBMP-2 / alphaBSM表现出比对照组明显更大的再生。在接受rhBMP-2 / ACS或rhBMP-2 / alphaBSM的缺损部位之间,在上皮迁移,结缔组织附着和新骨形成方面没有观察到显着差异。然而,rhBMP-2 / ACS支持明显更多的新牙骨质形成。未观察到强直或根吸收。结论:这项研究的结果支持使用rhBMP-2增强骨内牙周缺损的牙周再生。尽管这项新颖的技术前景广阔,但对载体系统的改进可能会为增强再生潜力提供关键。

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