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增强聚酯基材料在骨固定应用中的策略。

Strategies for Enhancing Polyester-Based Materials for Bone Fixation Applications.

机构信息

School of Engineering, Newcastle University, Newcastle upon Tyne NE1 7RU, UK.

School of Dental Sciences, Translational and Clinical Research Institute, Faculty of Medical Sciences, Newcastle University, Newcastle upon Tyne NE1 7RU, UK.

出版信息

Molecules. 2021 Feb 13;26(4):992. doi: 10.3390/molecules26040992.

Abstract

Polyester-based materials are established options, regarding the manufacturing of bone fixation devices and devices in routine clinical use. This paper reviews the approaches researchers have taken to develop these materials to improve their mechanical and biological performances. Polymer blending, copolymerisation, and the use of particulates and fibre bioceramic materials to make composite materials and surface modifications have all been studied. Polymer blending, copolymerisation, and particulate composite approaches have been adopted commercially, with the primary focus on influencing the in vivo degradation rate. There are emerging opportunities in novel polymer blends and nanoscale particulate systems, to tune bulk properties, and, in terms of surface functionalisation, to optimise the initial interaction of devices with the implanted environment, offering the potential to improve the clinical performances of fracture fixation devices.

摘要

聚酯基材料是制造骨固定装置和常规临床使用设备的既定选择。本文综述了研究人员为改善这些材料的机械和生物性能而采用的方法。聚合物共混、共聚以及使用颗粒和纤维生物陶瓷材料来制造复合材料和表面改性已被广泛研究。聚合物共混、共聚和颗粒复合材料的方法已经商业化应用,主要侧重于影响体内降解速率。在新型聚合物共混物和纳米级颗粒系统中存在新的机会,可以调整整体性能,在表面功能化方面,优化器械与植入环境的初始相互作用,从而有可能提高骨折固定装置的临床性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0501/7917714/c463c10ffcf5/molecules-26-00992-g001.jpg

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