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The physicochemical/biological properties of porous tantalum and the potential surface modification techniques to improve its clinical application in dental implantology

机译:多孔钽的理化/生物学特性及其潜在的表面改性技术,可改善其在牙种植学中的临床应用

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More rapid restoration and more rigid functionality have been pursued for decades in the field of dental implantology. Under such motivation, porous tantalum has been recently introduced to design a novel type of dental implant. Porous tantalum bears interconnected porous structure with pore size ranging from 300 to 600 pm and a porosity of 75-85%. Its elastic modulus (1.3-10 GPa) more closely approximates that of natural cortical (12-18 GPa) andcancellous bone (0.1-0.5 GPa) in comparison with the most commonly used dental materials, such as titanium and titanium alloy (106-115 GPa). Porous tantalum is highly corrosion-resistant and biocompatible. It can significantly enhance the proliferation and differentiation of primary osteoblasts derived from elderly people than titanium. Porous tantalum can allow bone ingrowth and establish not only osseointegration but also osseoincorporation, which will significantly enhance the secondary stability of implants in bone tissue. In this review, we summarize the physicochemical, mechanical and biological properties of porous tantalum. We further discuss the performance of current tantalum dental implants and present the methodologies of surface modifications in order to improve their biological performance. (C) 2015 Elsevier B.V. All rights reserved.
机译:在牙种植学领域中,数十年来一直追求更快速的修复和更严格的功能。在这样的动机下,最近已经引入多孔钽来设计新型的牙科植入物。多孔钽具有相互连接的多孔结构,其孔径范围为300至600 pm,孔隙率为75-85%。与最常用的牙科材料,例如钛和钛合金(106-115)相比,其弹性模量(1.3-10 GPa)更接近于天然皮质(12-18 GPa)和松质骨(0.1-0.5 GPa)。 GPa)。多孔钽具有高度的耐腐蚀性和生物相容性。与钛相比,它可以显着增强源自老年人的原代成骨细胞的增殖和分化。多孔钽可以使骨骼向内生长,不仅可以建立骨整合,而且可以建立骨整合,这将显着增强植入物在骨组织中的次生稳定性。在这篇综述中,我们总结了多孔钽的物理化学,机械和生物学特性。我们将进一步讨论当前钽牙植入物的性能,并提出表面改性的方法,以改善其生物学性能。 (C)2015 Elsevier B.V.保留所有权利。

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