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Nanomodified Peek Dental Implants: Bioactive Composites and Surface Modification—A Review

机译:纳米改性的聚醚醚酮牙科植入物:生物活性复合材料和表面改性—综述。

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摘要

Purpose. The aim of this review is to summarize and evaluate the relevant literature regarding the different ways how polyetheretherketone (PEEK) can be modified to overcome its limited bioactivity, and thereby making it suitable as a dental implant material. Study Selection. An electronic literature search was conducted via the PubMed and Google Scholar databases using the keywords “PEEK dental implants,” “nano,” “osseointegration,” “surface treatment,” and “modification.” A total of 16 in vivo and in vitro studies were found suitable to be included in this review. Results. There are many viable methods to increase the bioactivity of PEEK. Most methods focus on increasing the surface roughness, increasing the hydrophilicity and coating osseoconductive materials. Conclusion. There are many ways in which PEEK can be modified at a nanometer level to overcome its limited bioactivity. Melt-blending with bioactive nanoparticles can be used to produce bioactive nanocomposites, while spin-coating, gas plasma etching, electron beam, and plasma-ion immersion implantation can be used to modify the surface of PEEK implants in order to make them more bioactive. However, more animal studies are needed before these implants can be deemed suitable to be used as dental implants.
机译:目的。这篇综述的目的是总结和评估有关如何修改聚醚醚酮(PEEK)以克服其有限的生物活性,从而使其适合用作牙科植入物材料的不同方式的相关文献。研究选择。通过PubMed和Google Scholar数据库通过关键词“ PEEK牙科植入物”,“纳米”,“骨整合”,“表面处理”和“修饰”进行了电子文献搜索。发现总共16项体内和体外研究适合纳入此评价。结果。有许多可行的方法可以提高PEEK的生物活性。大多数方法集中在增加表面粗糙度,增加亲水性和涂覆骨传导材料上。结论。 PEEK可以通过多种方法进行纳米级修饰以克服其有限的生物活性。具有生物活性纳米粒子的熔融共混物可用于生产生物活性纳米复合材料,而旋涂,气体等离子体蚀刻,电子束和等离子浸没注入可用于修饰PEEK植入物的表面,以使其具有更高的生物活性。但是,在将这些植入物视为适合用作牙科植入物之前,需要进行更多的动物研究。

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