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骨磷灰石纳米晶体:晶体结构、化学成分与架构

Bone Apatite Nanocrystal: Crystalline Structure, Chemical Composition, and Architecture.

作者信息

Wang Bin, Zhang Zuoqi, Pan Haobo

机构信息

Shenzhen Institute of Advanced Technology, Chinese Academy of Sciences, Shenzhen 518055, China.

Department of Mechanical Engineering, City University of Hong Kong, Hong Kong SAR, China.

出版信息

Biomimetics (Basel). 2023 Feb 22;8(1):90. doi: 10.3390/biomimetics8010090.

Abstract

The biological and mechanical functions of bone rely critically on the inorganic constituent, which can be termed as bone apatite nanocrystal. It features a hydroxylapatite-like crystalline structure, complex chemical compositions (e.g., carbonate-containing and calcium- and hydroxyl-deficient), and fine geometries and properties. The long research with vast literature across broad spectra of disciplines and fields from chemistry, crystallography, and mineralogy, to biology, medical sciences, materials sciences, mechanics, and engineering has produced a wealth of knowledge on the bone apatite nanocrystal. This has generated significant impacts on bioengineering and industrial engineering, e.g., in developing new biomaterials with superior osteo-inductivities and in inspiring novel strong and tough composites, respectively. Meanwhile, confusing and inconsistent understandings on the bone mineral constituent should be addressed to facilitate further multidisciplinary progress. In this review, we present a mineralogical account of the bone-related ideal apatite mineral and then a brief historical overview of bone mineral research. These pave the road to understanding the bone apatite nanocrystal via a material approach encompassing crystalline structure, diverse chemical formulae, and interesting architecture and properties, from which several intriguing research questions emerge for further explorations. Through providing the classical and latest findings with decent clearness and adequate breadth, this review endeavors to promote research advances in a variety of related science and engineering fields.

摘要

骨骼的生物学和力学功能严重依赖于无机成分,这种无机成分可称为骨磷灰石纳米晶体。它具有类羟基磷灰石的晶体结构、复杂的化学成分(如含碳酸盐以及钙和羟基缺乏)以及精细的几何形状和特性。从化学、晶体学、矿物学,到生物学、医学、材料科学、力学和工程学等广泛学科和领域进行了长期研究并产生了大量文献,这些研究积累了关于骨磷灰石纳米晶体的丰富知识。这分别对生物工程和工业工程产生了重大影响,例如开发具有卓越骨诱导性的新型生物材料以及激发新型高强度和高韧性复合材料。同时,应解决对骨矿物质成分的混乱和不一致的认识,以促进进一步的多学科进展。在本综述中,我们首先介绍与骨相关的理想磷灰石矿物的矿物学情况,然后简要回顾骨矿物质研究的历史。这些为通过一种涵盖晶体结构、多样的化学式以及有趣的结构和特性的材料方法来理解骨磷灰石纳米晶体铺平了道路,从中出现了几个有趣的研究问题有待进一步探索。通过以适当的清晰度和足够的广度提供经典和最新发现,本综述致力于推动各个相关科学和工程领域的研究进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e2a0/10046636/4a27eff1295e/biomimetics-08-00090-g001.jpg

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