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Overview of Hydroxyapatite-Graphene Nanoplatelets Composite as Bone Graft Substitute: Mechanical Behavior and In-vitro Biofunctionality

机译:羟基磷灰石 - 石墨烯纳米片概述复合材料作为骨移植物替代:机械行为和体外生物功能性

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摘要

Hydroxyapatite (HA) and related materials have been frequently studied as ceramic-based bone graft materials due to their outstanding biocompatibility and osteoconduction. Since the bones are the load supporting parts of a vertebrate, they must have good fracture toughness (K-IC) to avoid fracture at high loading during limb movements. However, the main shortcomings of HA are the poor fracture toughness and brittleness. The mechanical properties of HA need to be improved for orthopedic applications, therefore it is often fabricated with other materials into a composite. This article focuses on the effect of carbon nanostructures (CNSs) especially graphene nanoplatelets (GNPs) on the mechanical, physicochemical properties and in-vitro bio-functional performances of HA. We provide an overview on the preparation and characterization of the HA-GNPs composites. To conclude, the challenges in the fabrication of multi-substituted HA-GNPs composites and future outlooks in the biomedical domain are discussed.
机译:由于其出色的生物相容性和骨质化,常常研究羟基磷灰石(HA)和相关材料。由于骨骼是脊椎动物的负载支撑部分,因此它们必须具有良好的断裂韧性(K-IC),以避免在肢体运动期间高负载下的断裂。然而,HA的主要缺点是骨折韧性和脆性差。 HA的机械性能需要改善整形外科应用,因此通常用其他材料制成复合材料。本文侧重于碳纳米结构(CNSS)尤其是石墨烯纳米片(GNPS)对HA的机械,物理化学性质和体外生物功能性性能的影响。我们概述了HA-GNPS复合材料的制备和表征。为了得出结论,讨论了在生物医学域中制造多取代的HA-GNP复合材料和未来前景的挑战。

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