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Healing of surgically created circumferential gap around Nano-coating surface dental implants in dogs

机译:犬纳米涂层表面牙科植入物周围手术产生的圆周间隙的愈合

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摘要

The development and expanded use of dental implants has been remarkably increased. The implant stability and osseointegration are important factors in the success of treatment. Commercially pure titanium and its alloys are the most commonly used materials for endosseous dental implants. Hydroxyapatite (HA), one of the calcium phosphate, has been studied for biomedical applications since it has similarity in chemistry with inorganic components of human bone and its biocompatibility. But the use of HA coated dental implants remain still controversial, because some reports suggest that the HA coating may separate from the substructure, undergo dissolution in tissue fluids, and contribute to rapid breakdown around the implants. HA coating can be applied on metal implants by numerous methods. Of several coating methods, ion beam-assisted deposition (IBAD) has shown to promise. This study was to compare the healing response of various nano-coating surface implants (by IBAD) placed in surgically created circumferential gaps 12 weeks postplacement. In six mongrel dogs, all mandible premolars and the first molar were extracted and after an 8-week healing period, four kinds of implants were placed. 2 mm circumferential coronal defects around the implants were performed surgically with a customized step drill. Groups were divided according to the fixture surfaces. The dogs were sacrificed following a 12 week healing period. Specimens were analyzed histologically and histomorphometrically. During the healing period, healing was uneventful and implants were well maintained. The bone-to-implant contact (BIC) for experimental groups - calcium phosphate coating implants with or without heat treatment-were much higher than the control group. The defect fill were also higher in the experimental groups. In the control group, the coronal part showed minimal bone fill and osseointegration. Within the scope of this study, calcium phosphate coating using IBAD may improve the bone response and the calcium phosphate coating may therefore be suitable in implant design with complex surface geometries. Copyright (c) 2008 John Wiley & Sons, Ltd.
机译:牙植入物的开发和广泛使用已大大增加。植入物的稳定性和骨整合是治疗成功的重要因素。商业上纯钛及其合金是骨内牙植入物最常用的材料。羟基磷灰石(HA)是一种磷酸钙,已在生物医学领域得到了研究,因为它在化学上与人体骨骼的无机成分具有相似性,并且具有生物相容性。但是,使用HA涂层的牙科植入物仍然存在争议,因为一些报告表明HA涂层可能与下部结构分离,在组织液中溶解,并导致植入物周围的快速破裂。 HA涂层可以通过多种方法应用于金属植入物。在几种涂覆方法中,离子束辅助沉积(IBAD)已显示出前景。这项研究旨在比较放置12周后放置在手术产生的周向间隙中的各种纳米涂层表面植入物(通过IBAD)的愈合反应。在六只杂种犬中,取出所有下颌前磨牙和第一颗磨牙,并且在8周的愈合期后,放置了四种植入物。植入物周围的2 mm周向冠状缺损使用定制的阶梯钻通过手术进行。根据夹具表面将组划分。在12周的康复期后将狗处死。对标本进行组织学和组织形态学分析。在愈合期间,愈合情况良好,并且植入物保持良好。实验组的骨-植入物接触(BIC)-经过或未进行热处理的磷酸钙涂层植入物远高于对照组。实验组的缺损率也较高。在对照组中,冠状部分显示出最小的骨填充和骨整合。在这项研究的范围内,使用IBAD的磷酸钙涂层可以改善骨骼反应,因此磷酸钙涂层可能适用于具有复杂表面几何形状的植入物设计。版权所有(c)2008 John Wiley&Sons,Ltd.

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