聚醚醚酮表面改性促进骨整合的研究进展。

Biomaterials Translational Pub Date : 2025-06-25 eCollection Date: 2025-01-01 DOI:10.12336/bmt.24.00052
Yu Chen, Zhiyong Chen, Kewen Lei, Jiandong Ding, Lin Yu
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引用次数: 0

摘要

近几十年来,骨科植入物领域经历了快速发展,从几个鲜为人知的例子发展成为再生医学中最具活力的领域之一。聚醚醚酮(PEEK)由于其优异的生物相容性和适当的机械强度,在该领域脱颖而出,成为强大的竞争对手。然而,PEEK的临床应用受到其固有的生物惰性的限制。因此,许多研究都集中在利用表面活化技术来克服PEEK的生物惰性问题。有必要深入研究这些修饰的复杂影响及其相应的方法。本文综述了近年来用于增强PEEK种植体骨整合的表面改性研究,并根据其改性方法和技术将其分为四部分:(1)物理处理,(2)湿化学方法,(3)物理与化学结合处理,(4)生物活性包衣。最后,我们概述了未来PEEK表面设计必须解决的挑战和未满足的需求。总之,改变PEEK的表面形态和/或表面基团以获得粗糙、多孔、亲水性和生物活性的表面,或在PEEK表面加入具有骨形成能力的生物活性剂/涂层,已经显示出促进骨整合的巨大潜力,这可以作为后续临床转化的坚实基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Surface modification of polyetheretherketone for boosted osseointegration: A review.

The field of orthopaedic implants has experienced rapid growth in recent decades, evolving from a few obscure examples to become one of the most vibrant domains within regenerative medicine. Polyetheretherketone (PEEK) stands out as a formidable competitor in this field due to its exceptional biocompatibility and appropriate mechanical strength. However, the clinical application of PEEK is limited by its inherent biological inertness. Therefore, numerous studies have focused on overcoming the bio-inert issue of PEEK using surface activation techniques. It is necessary to delve into the intricate effects of these modifications and their corresponding methods. In this review, we provide a comprehensive summary of contemporary research on surface modification for enhancing osseointegration of PEEK implants, categorising them into four parts based on their modification methods and techniques used: (1) physical treatment, (2) wet chemical methods, (3) combination of physical and chemical treatments, and (4) bioactive coating. Finally, we outline the challenges and unmet needs that must be addressed by future designs of PEEK surfaces. Overall, altering the surface morphology and/or surface group of PEEK to obtain a rough, porous, hydrophilic, and bioactive surface, or incorporating bioactive agents/coatings with bone-forming abilities onto the surface of PEEK has shown great potential for promoting osseointegration, which can serve as a solid foundation for subsequent clinical translation.

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CiteScore
6.70
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