首页> 外文期刊>Journal of periodontal research >Synergistic induction of periodontal tissue regeneration by binary application of human osteogenic protein-1 and human transforming growth factor-β 3 in Class II furcation defects of Papio ursinus
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Synergistic induction of periodontal tissue regeneration by binary application of human osteogenic protein-1 and human transforming growth factor-β 3 in Class II furcation defects of Papio ursinus

机译:人成骨蛋白-1和人转化生长因子-β3的二元应用协同诱导牙周皮毛II类分叉缺损的牙周组织再生

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Background and Objective: Binary applications of recombinant human osteogenic protein-1 (hOP-1) and transforming growth factor-β3 (hTGF-β3) synergize to induce pronounced bone formation. To induce periodontal tissue regeneration, binary applications of hOP-1 and hTGF-β 3 were implanted in Class II furcation defects of the Chacma baboon, Papio ursinus. Material and Methods: Defects were created bilaterally in the furcation of the first and second mandibular molars of three adult baboons. Single applications of 25μg hOP-1 and 75μg hTGF-β 3 in Matrigel ? matrix were compared with 20:1 binary applications, i.e. 25μg hOP-1and1.25μg hTGF-β 3. Morcellated fragments of autogenous rectus abdominis striated muscle were added to binary applications. Sixty days after implantation, the animals were killed and the operated tissues harvested en bloc. Undecalcified sections were studied by light microscopy, and regenerated tissue was assessed by measuring volume and height of newly formed alveolar bone and cementum. Results: The hOP-1 and hTGF-β 3 induced periodontal tissue regeneration and cementogenesis. Qualitative morphological analysis of binary applications showed clear evidence for considerable periodontal tissue regeneration. Quantitatively, the differences in the histomorphometric values did not reach statistical significance for the group size chosen for this primate study. The addition of morcellated muscle fragments did not enhance tissue regeneration. Binary applications showed rapid expansion of the newly formed bone against the root surfaces following fibrovascular tissue induction in the centre of the treated defects. Conclusion: Binary applications of hOP-1and hTGF-β 3 in Matrigel ? matrix in ClassII furcation defects of P. ursinus induced substantial periodontal tissue regeneration, which was tempered, however, by the anatomy of the furcation defect model, which does not allow for the rapid growth and expansion of the synergistic induction of bone formation, particularly when additionally treated with responding myoblastic stem cells.
机译:背景与目的:重组人成骨蛋白-1(hOP-1)和转化生长因子-β3(hTGF-β3)的二元应用协同诱导明显的骨形成。为了诱导牙周组织再生,将hOP-1和hTGF-β3的二元应用植入了Chacma狒狒,Papio ursinus的II类分叉缺损中。材料和方法:在三个成年狒狒的第一和第二下颌磨牙的分叉处双侧产生缺陷。 Matrigel中25μghOP-1和75μghTGF-β3的单一应用将基质与20:1二元应用(即25μghOP-1和1.25μghTGF-β3)进行比较。将自体腹直肌横纹肌的碎裂片段添加到二元应用中。植入后六十天,将动物处死并整块收集手术组织。通过光学显微镜研究未脱钙的切片,并通过测量新形成的牙槽骨和牙骨质的体积和高度来评估再生组织。结果:hOP-1和hTGF-β3诱导牙周组织再生和骨水泥形成。对二元应用的定性形态分析表明,牙周组织再生相当明显。在数量上,对于为该灵长类动物研究选择的组规模,组织形态计量学值的差异未达到统计学意义。粉碎的肌肉碎片的添加并没有增强组织再生。二元应用显示,在处理过的缺损中心发生纤维血管组织诱导后,新形成的骨头紧贴根部表面迅速膨胀。结论:hOP-1和hTGF-β3在Matrigel中的二元应用。 P. ursinus的II类分叉缺损中的基质诱导了大量的牙周组织再生,但是由于分叉缺损模型的解剖结构而受到抑制,这不允许协同生长的骨形成诱导快速增长和扩展,特别是当另外用反应性成肌干细胞治疗。

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