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牙槽骨再生的预后因素:一种提供空间的生物材料对引导组织再生的影响。

Prognostic factors for alveolar regeneration: effect of a space-providing biomaterial on guided tissue regeneration.

作者信息

Polimeni Giuseppe, Koo Ki-Tae, Qahash Mohammed, Xiropaidis Andreas V, Albandar Jasim M, Wikesjö Ulf M E

机构信息

Laboratory for Applied Periodontal and Craniofacial Regeneration, Department of Periodontology, Temple University School of Dentistry, Philadelphia, PA, USA.

出版信息

J Clin Periodontol. 2004 Sep;31(9):725-9. doi: 10.1111/j.1600-051X.2004.00542.x.

Abstract

OBJECTIVES

There is a limited understanding of the effect of bone biomaterials on the healing potential when used in conjunction with guided tissue regeneration (GTR). The objective of this study was to evaluate the effect of a space-providing coral-derived biomaterial on alveolar bone regeneration in conjunction with GTR.

METHODS

Bilateral, critical-size, 6-mm, supra-alveolar, periodontal defects were created in four young adult Beagle dogs. In a split-mouth design, the animals received an ePTFE device to provide for GTR in contralateral defect sites with or without the coral biomaterial. The animals were euthanized at 4 weeks post surgery. A histometric analysis assessed vertical regeneration of alveolar bone relative to space-provision by the ePTFE device. Because of the correlation of within-dog measurements, a mixed model ANOVA was used to analyze the data.

RESULTS

There was significantly greater mean bone regeneration in sites receiving calcium carbonate coral implant GTR (cGTR) compared to GTR (p < 0.0001). Sites providing larger wound areas exhibited greater bone regeneration compared to sites exhibiting smaller wound areas (p < 0.0001). However, grouping the sites by wound area thresholds showed that bone regeneration was not significantly different in sites receiving cGTR compared to sites receiving GTR alone, irrespective of the size of the wound area (p > 0.5).

CONCLUSIONS

Space-provision has a significant effect on bone regeneration following GTR. The coral biomaterial effectively enhances space-provision, and this appears to be the principal mechanism by which this biomaterial supports bone regeneration rather than postulated osteoconductive properties.

摘要

目的

对于骨生物材料与引导组织再生(GTR)联合使用时对愈合潜能的影响,人们了解有限。本研究的目的是评估一种提供空间的珊瑚衍生生物材料与GTR联合使用时对牙槽骨再生的影响。

方法

在4只年轻成年比格犬身上制造双侧、临界尺寸、6毫米、牙槽嵴上牙周缺损。采用分口设计,动物在对侧缺损部位接受ePTFE装置以提供GTR,其中一侧有或没有珊瑚生物材料。在术后4周对动物实施安乐死。组织计量学分析评估牙槽骨相对于ePTFE装置提供空间的垂直再生情况。由于犬内测量值之间存在相关性,因此使用混合模型方差分析来分析数据。

结果

与单纯GTR相比,接受碳酸钙珊瑚植入物GTR(cGTR)的部位平均骨再生明显更多(p < 0.0001)。与伤口面积较小的部位相比,伤口面积较大的部位骨再生更多(p < 0.0001)。然而,按伤口面积阈值对部位进行分组显示,无论伤口面积大小,接受cGTR的部位与仅接受GTR的部位相比,骨再生无显著差异(p > 0.5)。

结论

提供空间对GTR后的骨再生有显著影响。珊瑚生物材料有效增强了空间提供,这似乎是该生物材料支持骨再生的主要机制,而非假定的骨传导特性。

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