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骨与骨结合式牙种植体相关支持组织界面的复合形态:透射电子显微镜和高压电子显微镜分析

Composite morphology of the bone and associated support-tissue interfaces to osseointegrated dental implants: TEM and HVEM analyses.

作者信息

Steflik D E, Corpe R S, Lake F T, Sisk A L, Parr G R, Hanes P J, Buttle K

机构信息

Department of Surgery, Medical College, Georgia School of Medicine, Augusta 30912, USA.

出版信息

Int J Oral Maxillofac Implants. 1997 Jul-Aug;12(4):443-53.

PMID:9274073
Abstract

Correlated transmission electron and high-voltage electron microscopic analyses examined the undecalcified bone and associated support tissues of 60 endosseous titanium blade and titanium and ceramic root-form implants in dogs. The implants supported fixed partial dentures for up to 2 years. Data obtained from this investigation suggest that a range of tissues, both mineralized and unmineralized, support osseointegrated dental implants. This study examined the tissues apposing not just isolated aspects of the implant surface, but the entire length of the implant, and found that mineralized and unmineralized tissues existed concurrently. Much of the implant surface was apposed by mandibular bone, and both root-form and blade implants osseointegrated. The densely mineralized collagen fibril matrix was often separated from the implant by only a 20-nm to 50-nm electron-dense, ruthenium-positive deposit. High-voltage electron microscope stereology demonstrated that cellular processes extended directly to the implant from underlying osteocytes. In the same implants, areas containing an unmineralized collagen matrix interposed between the bone and implant surface were observed. In this region osteoblasts interacted with this matrix, and Howship's lacunae, containing vascular elements and osteoclasts, were also observed. The remodeling activities appear to be a homeostasis of catabolic activity (osteoclasts) and metabolic activity (osteoblasts). The apex of the implant was often apposed by a fibrofatty stroma. The support tissue response appears to be the result of the interrelations of osteoblasts, osteocytes, and osteoclasts in association with vascular elements. Therefore, the support tissue response to osseointegrated implants is a dynamic activity that involves the healthy interaction of these cells and tissues along the entire length of the implant.

摘要

相关的透射电子显微镜和高压电子显微镜分析研究了60颗犬用骨内钛刀片以及钛和陶瓷根形种植体的未脱钙骨和相关支持组织。这些种植体支撑固定局部义齿长达2年。从这项研究中获得的数据表明,一系列矿化和未矿化的组织支持骨结合牙种植体。本研究不仅检查了与种植体表面孤立部分相对的组织,还检查了种植体的整个长度,发现矿化和未矿化组织同时存在。种植体表面的大部分与下颌骨相对,根形和刀片状种植体均实现了骨结合。高度矿化的胶原纤维基质通常仅被一层20纳米至50纳米的电子致密、钌阳性沉积物与种植体隔开。高压电子显微镜体视学表明,细胞突起从下方的骨细胞直接延伸至种植体。在同一批种植体中,观察到在骨与种植体表面之间存在含有未矿化胶原基质的区域。在该区域,成骨细胞与该基质相互作用,还观察到含有血管成分和破骨细胞的Howship腔隙。重塑活动似乎是分解代谢活动(破骨细胞)和代谢活动(成骨细胞)的一种稳态。种植体的根尖通常与纤维脂肪组织相对。支持组织反应似乎是成骨细胞、骨细胞和破骨细胞与血管成分相互关系的结果。因此,支持组织对骨结合种植体的反应是一种动态活动,涉及这些细胞和组织在种植体整个长度上的健康相互作用。

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