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新兴的海洋衍生纳米羟基磷灰石及其复合材料在植入物和生物医学中的应用。

Emerging marine derived nanohydroxyapatite and their composites for implant and biomedical applications.

机构信息

Department of Ceramic Technology, Anna University, Chennai, Tamil Nadu, 600025, India.

Center for Nanoscience and Technology, Chennai Institute of Technology, Chennai, Tamil Nadu, 600069, India.

出版信息

J Mech Behav Biomed Mater. 2021 Jul;119:104523. doi: 10.1016/j.jmbbm.2021.104523. Epub 2021 Apr 25.

Abstract

Implant materials must mimic natural human bones with biocompatibility, osteoconductivity and mechanical stability to successfully replace damaged or disease-affected bones. Synthetic hydroxyapatite was incorporated with bioglass to mimic natural bones for replacing conventional implant materials which has led to certain toxicity issues. Hence, hydroxyapatite (HAp) are recently gaining applicational importance as they are resembling the structure and function of natural bones. Further, nanosized HAp is under extensive research to utilize them as a potential replacement for traditional implants with several exclusive properties. However, chemical synthesis of nano-HAp exhibited toxicity towards normal and healthy cells. Recently, biogenic Hap synthesis from marine and animal sources are introduced as a next generation implant materials, due to their mineral ion and significant porous architecture mediated biocompatibility and bone bonding ability, compared to synthetic HAp. Thus, the purpose of the paper is to give a bird's eye view into the conventional approaches for fabricating nano-HAp, its limitations and the significance of using marine organisms and marine food wastes as a precursor for biogenic nano-Hap production. Moreover, in vivo and in vitro analyses of marine source derived nano-HAp and their potential biomedical applications were also discussed.

摘要

植入材料必须具有生物相容性、骨诱导性和机械稳定性,以成功替代受损或患病的骨骼,从而模拟天然人体骨骼。将合成羟磷灰石与生物玻璃结合,以模拟天然骨骼,替代传统的植入物材料,这导致了一些毒性问题。因此,羟磷灰石(HAp)最近作为一种潜在的传统植入物替代品得到了广泛应用,因为它们的结构和功能与天然骨骼相似。此外,纳米级 HAp 正在进行广泛的研究,以利用其作为传统植入物的替代品,具有多种独特的性能。然而,纳米-HAp 的化学合成对正常和健康细胞表现出毒性。最近,从海洋和动物来源中生物合成 HAp 被引入为下一代植入物材料,因为与合成 HAp 相比,其具有矿物离子和显著的多孔结构介导的生物相容性和骨结合能力。因此,本文的目的是概述用于制造纳米-HAp 的常规方法、其局限性,以及使用海洋生物和海洋食品废物作为生物合成纳米-HAp 生产前体的意义。此外,还讨论了海洋来源的纳米-HAp 的体内和体外分析及其潜在的生物医学应用。

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