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Hydroxyapatite-titanium bulk composites for bone tissue engineering applications

机译:用于骨组织工程应用的羟基磷灰石-钛块状复合材料

摘要

The research work on bulk hydroxyapatite (HA)-based composites are driven by the need to develop biomaterials with better mechanical properties without compromising its bioactivity and biocompatibility properties. Despite several years of research, the mechanical properties of the HA-based composites still need to be enhanced to match the properties of natural cortical bone. In this regard, the scope of this review on the HA-based bulk biomaterials is limited to the processing and the mechanical as well as biocompatibility properties for bone tissue engineering applications of a model system that is hydroxyapatite-titanium (HA-Ti) bulk composites. It will be discussed in this review how HA-Ti based bulk composites can be processed to have better fracture toughness and strength without compromising biocompatibility. The advantages of the functionally gradient materials to integrate the mechanical and biocompatibility properties is a promising approach in hard tissue engineering and has been emphasized here in reference to the limited literature reports. On the biomaterials fabrication aspect, the recent results are discussed to demonstrate that advanced manufacturing techniques, like spark plasma sintering can be adopted as a processing route to restrict the sintering reactions, while enhancing the mechanical properties. Various toughening mechanisms related to careful tailoring of microstructure are discussed. The in vitro cytocompatibilty, cell fate processes as well as in vivo biocompatibility results are also reviewed and the use of flow cytometry to quantify in vitro cell fate processes is being emphasized. (C) 2014 Wiley Periodicals, Inc.
机译:对块状羟基磷灰石(HA)基复合材料的研究工作是受开发具有更好机械性能而不损害其生物活性和生物相容性的生物材料的需求所驱动。尽管进行了数年的研究,但仍需要增强HA基复合材料的机械性能以匹配天然皮质骨的性能。在这方面,本次基于HA的块状生物材料的审查范围仅限于羟基磷灰石-钛(HA-Ti)块状复合材料模型系统的骨组织工程应用的加工,机械以及生物相容性。本文将讨论如何在不损害生物相容性的情况下,如何处理基于HA-Ti的块状复合材料,使其具有更好的断裂韧性和强度。整合机械和生物相容性特性的功能梯度材料的优势在硬组织工程中是一种很有前途的方法,在此已参考有限的文献报道予以强调。在生物材料的制造方面,讨论了最近的结果,以证明先进的制造技术(如火花等离子烧结)可以用作限制烧结反应,同时提高机械性能的工艺路线。讨论了与仔细调整微观结构有关的各种增韧机制。还审查了体外细胞相容性,细胞命运过程以及体内生物相容性结果,并且强调了流式细胞术对体外细胞命运过程进行定量的应用。 (C)2014威利期刊公司

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