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用于生物医学应用的聚(醚 - 醚 - 酮):从增强生物活性到增强型生物活性复合材料——综述

Poly (Ether-Ether-Ketone) for Biomedical Applications: From Enhancing Bioactivity to Reinforced-Bioactive Composites-An Overview.

作者信息

Senra Mônica Rufino, Marques Maria de Fátima Vieira, Monteiro Sergio Neves

机构信息

Instituto de Macromoleculas Professor Eloisa Mano, Universidade Federal do Rio de Janeiro, Horácio Macedo Av., 2.030, Bloco J, Cidade Universitária, Rio de Janeiro CEP 21941-598, RJ, Brazil.

Department of Materials Science, Military Institute of Engineering, IME, Praça General Tibúrcio, 80, Urca, Rio de Janeiro CEP 22290-270, RJ, Brazil.

出版信息

Polymers (Basel). 2023 Jan 10;15(2):373. doi: 10.3390/polym15020373.

Abstract

The global orthopedic market is forecasted to reach US$79.5 billion by the end of this decade. Factors driving the increase in this market are population aging, sports injury, road traffic accidents, and overweight, which justify a growing demand for orthopedic implants. Therefore, it is of utmost importance to develop bone implants with superior mechanical and biological properties to face the demand and improve patients' quality of life. Today, metallic implants still hold a dominant position in the global orthopedic implant market, mainly due to their superior mechanical resistance. However, their performance might be jeopardized due to the possible release of metallic debris, leading to cytotoxic effects and inflammatory responses in the body. Poly (ether-ether-ketone) (PEEK) is a biocompatible, high-performance polymer and one of the most prominent candidates to be used in manufacturing bone implants due to its similarity to the mechanical properties of bone. Unfortunately, the bioinert nature of PEEK culminates in its diminished osseointegration. Notwithstanding, PEEK's bioactivity can be improved through surface modification techniques and by the development of bioactive composites. This paper overviews the advantages of using PEEK for manufacturing implants and addresses the most common strategies to improve the bioactivity of PEEK in order to promote enhanced biomechanical performance.

摘要

预计到本十年末,全球骨科市场将达到795亿美元。推动该市场增长的因素包括人口老龄化、运动损伤、道路交通事故和超重,这些因素使得对骨科植入物的需求不断增加。因此,开发具有卓越机械性能和生物性能的骨植入物以满足需求并提高患者生活质量至关重要。如今,金属植入物在全球骨科植入物市场仍占据主导地位,主要是因为其具有卓越的机械抗性。然而,其性能可能会因金属碎屑的释放而受到损害,从而导致体内细胞毒性作用和炎症反应。聚醚醚酮(PEEK)是一种生物相容性高性能聚合物,由于其与骨的机械性能相似,是制造骨植入物最突出的候选材料之一。不幸的是,PEEK的生物惰性最终导致其骨整合能力下降。尽管如此,PEEK的生物活性可通过表面改性技术和开发生物活性复合材料来提高。本文概述了使用PEEK制造植入物的优势,并探讨了提高PEEK生物活性以促进增强生物力学性能的最常见策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eeac/9861117/76c684d78df9/polymers-15-00373-g001.jpg

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