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Reality of Dental Implant Surface Modification: A Short Literature Review

机译:种植牙表面修饰的现实:一篇简短的文献综述

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Screw-shaped endosseous implants that have a turned surface of commercially pure titanium have a disadvantage of requiring a long time for osseointegration while those implants have shown long-term clinical success in single and multiple restorations. Titanium implant surfaces have been modified in various ways to improve biocompatibility and accelerate osseointegration, which results in a shorter edentulous period for a patient. This article reviewed some important modified titanium surfaces, exploring the in vitro, in vivo and clinical results that numerous comparison studies reported. Several methods are widely used to modify the topography or chemistry of titanium surface, including blasting, acid etching, anodic oxidation, fluoride treatment, and calcium phosphate coating. Such modified surfaces demonstrate faster and stronger osseointegration than the turned commercially pure titanium surface. However, there have been many studies finding no significant differences in in vivo bone responses among the modified surfaces. Considering those in vivo results, physical properties like roughening by sandblasting and acid etching may be major contributors to favorable bone response in biological environments over chemical properties obtained from various modifications including fluoride treatment and calcium phosphate application. Recently, hydrophilic properties added to the roughened surfaces or some osteogenic peptides coated on the surfaces have shown higher biocompatibility and have induced faster osseointegration, compared to the existing modified surfaces. However, the long-term clinical studies about those innovative surfaces are still lacking.
机译:具有商业上纯钛表面的螺旋形骨内植入物的缺点是需要长时间进行骨整合,而这些植入物在单个或多个修复物中已显示出长期的临床成功。钛植入物表面已通过各种方式进行了改良,以改善生物相容性并加速骨整合,从而缩短了患者的缺牙期。本文回顾了一些重要的改性钛表面,探讨了许多比较研究报告的体外,体内和临床结果。几种方法被广泛用于修改钛表面的形貌或化学性质,包括喷砂,酸蚀刻,阳极氧化,氟化物处理和磷酸钙涂层。这样的改性表面显示出比转向的商业纯钛表面更快和更强的骨整合。然而,已经有许多研究发现改性表面之间的体内骨骼反应没有显着差异。考虑到这些体内结果,与通过各种修饰(包括氟化物处理和磷酸钙应用)获得的化学特性相比,诸如喷砂打磨和酸蚀粗糙等物理特性可能是生物环境中有利的骨骼反应的主要因素。近来,与现有的改性表面相比,添加到粗糙表面或某些表面上包被的成骨肽的亲水性已显示出更高的生物相容性并诱导了更快的骨整合。但是,仍然缺乏有关这些创新表面的长期临床研究。

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