首页> 外文期刊>International journal of oral and maxillofacial surgery >Guided bone regeneration at dehiscence-type defects using biphasic hydroxyapatite + beta tricalcium phosphate (Bone Ceramic) or a collagen-coated natural bone mineral (BioOss Collagen): an immunohistochemical study in dogs.
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Guided bone regeneration at dehiscence-type defects using biphasic hydroxyapatite + beta tricalcium phosphate (Bone Ceramic) or a collagen-coated natural bone mineral (BioOss Collagen): an immunohistochemical study in dogs.

机译:使用双相羟基磷灰石+β-磷酸三钙(骨陶瓷)或胶原蛋白包被的天然骨矿物质(BioOss胶原蛋白)引导裂开型缺损的骨再生:犬的免疫组织化学研究。

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摘要

The aim of this study was to immunohistochemically investigate bone regeneration following application of either hydroxyapatite+beta tricalcium phosphate (BCG) or a collagen-coated natural bone mineral (BOC) in combination with a collagen membrane at dehiscence-type defects in dogs. Standardized buccal dehiscence defects were surgically created following implant bed preparation in six beagle dogs. Defects were randomly filled with either BOC (BioOss Collagen) or BCG (Bone Ceramic) according to a split-mouth design, and covered with a native porcine derived collagen membrane (BioGide). After 1, 4 and 9 weeks of submerged healing, dissected blocks were processed for immunohistochemical (osteocalcin) and histomorphometrical analysis (residual defect length, new bone-implant contact, area of new bone fill, percentage of osseointegrated bone-graft particles). Both groups revealed a significant decrease in mean residual defect length, and increases in mean new bone-implant contact, bone fill and percentage of osseointegrated bone-graft particles after 4 and 9 weeks of healing. Remaining BCG and BOC granules were completely integrated into a secondarily formed network of spongiosa, but there was no osteoclastic activity at the surface of either type of bone-graft particle. Both BCG and BOC may provide an osteoconductive scaffold to support guided bone regeneration procedures at dehiscence-type defects.
机译:这项研究的目的是在狗的裂开型缺损中应用羟基磷灰石+β磷酸三钙(BCG)或胶原蛋白涂层的天然骨矿物质(BOC)结合胶原蛋白膜后,免疫组织化学研究骨骼再生。在六只比格犬的植入床准备工作之后,通过手术产生了标准化的颊裂开缺损。根据裂口设计,用BOC(BioOss胶原蛋白)或BCG(骨陶瓷)随机填充缺陷,并用天然猪衍生胶原膜(BioGide)覆盖。在浸没愈合的第1、4和9周后,将解剖的块进行免疫组织化学(骨钙素)和组织形态分析(残余缺损长度,新的骨-植入物接触,新的骨填充面积,骨整合的骨移植颗粒的百分比)。两组均显示,愈合4周和9周后,平均残余缺损长度显着减少,平均新的骨-植入物接触,骨填充和骨整合骨移植颗粒的百分比增加。剩余的BCG和BOC颗粒完全整合到海绵形成的二次形成的网络中,但是在两种类型的植骨颗粒表面均没有破骨活性。 BCG和BOC均可提供骨传导性支架,以支持裂开型缺损处的引导性骨再生程序。

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