首页> 外文期刊>Journal of Periodontology >Periodontal repair in dogs: a bioabsorbable calcium carbonate coral implant enhances space provision for alveolar bone regeneration in conjunction with guided tissue regeneration.
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Periodontal repair in dogs: a bioabsorbable calcium carbonate coral implant enhances space provision for alveolar bone regeneration in conjunction with guided tissue regeneration.

机译:狗的牙周修复:可生物吸收的碳酸钙珊瑚植入物可与引导的组织再生相结合,为牙槽骨再生提供更多的空间。

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BACKGROUND: Collapse or compression of a barrier device into a periodontal defect or onto the root surface compromises outcomes following guided tissue regeneration (GTR). Bone biomaterials have been suggested to support regeneration of alveolar bone and to improve space provision with GTR devices. The objective of this study was to evaluate space provision, alveolar bone, and cementum regeneration following use of a bioabsorbable, calcium carbonate biomaterial in conjunction with GTR. METHODS: Routine, critical size, 5 to 6 mm, supraalveolar, periodontal defects were created in 5 young adult beagle dogs. Alternate jaw quadrants in consecutive animals received GTR and the coral biomaterial (cGTR) or GTR alone. The animals were euthanized 4 weeks postsurgery and tissue blocks processed for histometric analysis. RESULTS: The coral implant particles were surrounded by newly-formed bone or immersed in connective tissue and appeared to resorb and be replaced by bone. There was limited, if any, appreciable cementum regeneration. Space provision was enhanced in cGTR compared to GTR sites (6.1 +/- 1.6 versus 2.4 +/- 0.8 mm2; P<0.05). Bone regeneration (height) was significantly increased in cGTR compared to GTR sites averaging 1.9 +/- 0.6 and 1.2 +/- 0.6 mm, respectively (P<0.05). Bone regeneration (area) was 2-fold greater in cGTR sites compared to the GTR control (3.3 +/- 1.8 versus 1.4 +/- 0.5 mm2), however the difference was not statistically significant (P>0.05). CONCLUSIONS: The coral implant significantly enhanced space provision for GTR while alveolar bone formation appeared to be enhanced by its use. Increased healing intervals are needed to fully understand the biologic value of the coral implant as an adjunct to GTR.
机译:背景:屏障装置塌陷或压入牙周缺损或根部表面会损害引导组织再生(GTR)后的结局。有人建议使用骨生物材料来支持牙槽骨的再生并改善GTR设备的空间供应。这项研究的目的是评估将可生物吸收的碳酸钙生物材料与GTR结合使用后的空间供应,牙槽骨和牙骨质再生。方法:在5只成年幼小比格犬中创建了常规的,临界大小为5至6 mm,上牙槽,牙周缺损的方法。连续动物的下颚象限交替接受GTR和单独的珊瑚生物材料(cGTR)或GTR。术后4周对动物实施安乐死并处理组织块以进行组织分析。结果:珊瑚植入物颗粒被新形成的骨头包围或浸没在结缔组织中,似乎被吸收并被骨头替代。如果有的话,牙骨质的再生有限。与GTR站点相比,cGTR中的空间供应有所增加(6.1 +/- 1.6对2.4 +/- 0.8 mm2; P <0.05)。与平均GTR部位平均1.9 +/- 0.6毫米和1.2 +/- 0.6毫米相比,cGTR的骨再生(高度)显着增加(P <0.05)。与GTR对照相比,cGTR部位的骨再生(面积)大2倍(3.3 +/- 1.8与1.4 +/- 0.5 mm2),但差异无统计学意义(P> 0.05)。结论:珊瑚植入物显着增强了GTR的空间供应,而牙槽骨的形成似乎因其使用而增强。需要更长的愈合间隔才能充分了解珊瑚植入物作为GTR的辅助剂的生物学价值。

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