胶原包被人工骨种植材料对牙周再生的影响。组织病理学研究。

A Sugaya
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引用次数: 0

摘要

颗粒状人工骨种植材料如羟基磷灰石(HAP)和磷酸三钙(TCP)已被频繁用于修复因牙周炎而丢失的牙周组织。然而,这些材料被认为不足以维持和稳定颗粒在失去骨的部位,对于活跃的骨形成,或牙周韧带再生。我们现在已经开发了一种复合物,由包覆有间胶原(最近作为一种生物材料受到关注)的HAP或TCP组成,并进行了实验以确定该材料对牙周组织重建的影响。采用HAP-软骨胶原复合物、TCP-软骨胶原复合物、HAP和TCP在实验性牙周炎犬的三壁骨缺损部位进行种植。没有植入物的对照组也被纳入研究。术后2、4、12周进行组织病理学观察。与对照组相比,植入复合物组颗粒的维持和稳定性增强,上皮细胞生长下降受到抑制,新骨和骨质形成加速。这些结果表明,采用胶原包被人工骨种植材料的种植方法将有助于牙周外科治疗,消除了传统种植方法的一些缺点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Effect of periodontal regeneration using collagen-coated synthetic bone implant materials. Histopathological study].

Granulated artificial bone implant materials such as hydroxyapatite (HAP) and tricalcium phosphate (TCP) have been frequently used in attempts to restore periodontal tissue lost as a result periodontitis. However, these materials are considered insufficient for the maintenance and stability of granules at sites losing bone, for active bone formation, or for periodontal ligament regeneration. We have now developed a complex consisting of HAP or TCP coated with atelocollagen (which has recently received attention as a biomaterial) and have conducted experiments to determine the effects of this material on the reconstruction of periodontal tissue. Implantations were performed using a HAP-atelocollagen complex, TCP-atelocollagen complex, HAP and TCP at three-wall bone defect sites in experimentally-induced periodontitis in dogs. A control group without the implants was included in the study. Histopathological observations were conducted 2, 4 and 12 weeks after surgery. Compared with the control group, the groups implanted with the complex displayed enhanced maintenance and stability of granules, suppression of epithelial downgrowth, and acceleration of new bone and cementum formation. These results indicate that the implant method using an atelocollagen-coated artificial bone implant material would be useful for periodontal surgical treatment, eliminating some of the disadvantages of conventional implant methods.

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