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PEEK 表面处理与骨整合。

Surface Treatments of PEEK for Osseointegration to Bone.

机构信息

McGill Craniofacial Tissue Engineering and Stem Cells Laboratory, Faculty of Dental Medicine and Oral Health Sciences, McGill University, 3640 University Street, Montreal, QC H3A 0C7, Canada.

出版信息

Biomolecules. 2023 Mar 2;13(3):464. doi: 10.3390/biom13030464.

Abstract

Polymers, in general, and Poly (Ether-Ether-Ketone) (PEEK) have emerged as potential alternatives to conventional osseous implant biomaterials. Due to its distinct advantages over metallic implants, PEEK has been gaining increasing attention as a prime candidate for orthopaedic and dental implants. However, PEEK has a highly hydrophobic and bioinert surface that attenuates the differentiation and proliferation of osteoblasts and leads to implant failure. Several improvements have been made to the osseointegration potential of PEEK, which can be classified into three main categories: (1) surface functionalization with bioactive agents by physical or chemical means; (2) incorporation of bioactive materials either as surface coatings or as composites; and (3) construction of three-dimensionally porous structures on its surfaces. The physical treatments, such as plasma treatments of various elements, accelerated neutron beams, or conventional techniques like sandblasting and laser or ultraviolet radiation, change the micro-geometry of the implant surface. The chemical treatments change the surface composition of PEEK and should be titrated at the time of exposure. The implant surface can be incorporated with a bioactive material that should be selected following the desired use, loading condition, and antimicrobial load around the implant. For optimal results, a combination of the methods above is utilized to compensate for the limitations of individual methods. This review summarizes these methods and their combinations for optimizing the surface of PEEK for utilization as an implanted biomaterial.

摘要

聚合物,尤其是聚醚醚酮(PEEK),已经成为传统骨植入生物材料的潜在替代品。由于其相对于金属植入物具有明显的优势,PEEK 作为骨科和牙科植入物的首选候选材料越来越受到关注。然而,PEEK 具有高度疏水性和生物惰性表面,会减弱成骨细胞的分化和增殖,导致植入物失败。已经对 PEEK 的骨整合潜力进行了多项改进,可以将其分为三类:(1)通过物理或化学手段对生物活性物质进行表面功能化;(2)将生物活性材料作为表面涂层或复合材料进行掺入;(3)在其表面构建三维多孔结构。物理处理,如各种元素的等离子体处理、加速中子束或传统技术如喷砂、激光或紫外线辐射,会改变植入物表面的微观几何形状。化学处理会改变 PEEK 的表面成分,在暴露时应进行滴定。可以将生物活性材料掺入植入物表面,应根据预期用途、负载条件和植入物周围的抗菌负载来选择该材料。为了获得最佳效果,通常会结合使用上述方法来弥补单个方法的局限性。本综述总结了这些方法及其组合,以优化 PEEK 表面,将其用作植入式生物材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/535b/10046336/326cf55b4dd4/biomolecules-13-00464-g001.jpg

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