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An overview of graphene-based hydroxyapatite composites for orthopedic applications

机译:骨科应用的石墨烯基羟基磷灰石复合材料概述

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摘要

Hydroxyapatite (HA) is an attractive bioceramic for hard tissue repair and regeneration due to its physicochemical similarities to natural apatite. However, its low fracture toughness, poor tensile strength and weak wear resistance become major obstacles for potential clinical applications. One promising method to tackle with these problems is exploiting graphene and its derivatives (graphene oxide and reduced graphene oxide) as nanoscale reinforcement fillers to fabricate graphene-based hydroxyapatite composites in the form of powders, coatings and scaffolds. The last few years witnessed increasing numbers of studies on the preparation, mechanical and biological evaluations of these novel materials. Herein, various preparation techniques, mechanical behaviors and toughen mechanism, the in vitro/in vivo biocompatible analysis, antibacterial properties of the graphene-based HA composites are presented in this review.
机译:羟基磷灰石(HA)由于其与天然磷灰石的物理化学相似性,是一种用于硬组织修复和再生的有吸引力的生物陶瓷。然而,其低的断裂韧性,差的拉伸强度和弱的耐磨性成为潜在的临床应用的主要障碍。解决这些问题的一种有前途的方法是利用石墨烯及其衍生物(氧化石墨烯和还原的氧化石墨烯)作为纳米级增强填料,以粉末,涂料和支架的形式制造基于石墨烯的羟基磷灰石复合材料。在最近几年中,有关这些新型材料的制备,力学和生物学评估的研究越来越多。本文介绍了各种制备技术,力学行为和增韧机理,体外/体内生物相容性分析,基于石墨烯的HA复合材料的抗菌性能。

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