无定形的重要性:人体内的钙和镁磷酸盐。

The importance of being amorphous: calcium and magnesium phosphates in the human body.

机构信息

Department of Chemistry "Ugo Schiff", University of Florence, via della Lastruccia 3, 50019, Sesto Fiorentino, Florence, Italy; CSGI, Center for Colloid and Surface Science, via della Lastruccia 3, 50019, Sesto Fiorentino, Florence, Italy.

Department of Chemistry "Ugo Schiff", University of Florence, via della Lastruccia 3, 50019, Sesto Fiorentino, Florence, Italy.

出版信息

Adv Colloid Interface Sci. 2019 Jul;269:219-235. doi: 10.1016/j.cis.2019.04.011. Epub 2019 Apr 27.

Abstract

This article focuses on the relevance of amorphous calcium (and magnesium) phosphates in living organisms. Although crystalline calcium phosphate (CaP)-based materials are known to constitute the major inorganic constituents of human hard tissues, amorphous CaP-based structures, often in combination with magnesium, are frequently employed by Nature to build up components of our body and guarantee their proper functioning. After a brief description of amorphous calcium phosphate (ACP) formation mechanism and structure, this paper is focused on the stabilization strategies that can be used to enhance the lifetime of the poorly stable amorphous phase. The various locations of our body in which ACP (pure or in combination with Mg) can be found (i.e. bone, enamel, small intestine, calciprotein particles and casein micelles) are highlighted, showing how the amorphous nature of ACP is often of paramount importance for the achievement of a specific physiological function. The last section is devoted to ACP-based biomaterials, focusing on how these materials differ from their crystalline counterparts in terms of biological response.

摘要

本文重点介绍了无定形钙(和镁)磷在生物体内的相关性。尽管晶态的基于磷酸钙(CaP)的材料已知构成了人体硬组织的主要无机成分,但无定形的基于 CaP 的结构,通常与镁结合,经常被自然界用来构建我们身体的组成部分,并保证其正常功能。在简要描述无定形磷酸钙(ACP)的形成机制和结构之后,本文重点介绍了可以用来提高这种不稳定的无定形相寿命的稳定化策略。强调了我们身体的各个部位(即骨骼、牙釉质、小肠、钙结合蛋白颗粒和酪蛋白胶束)中可以发现 ACP(纯或与 Mg 结合)的位置,展示了 ACP 的无定形性质对实现特定生理功能的重要性。最后一部分专门介绍了基于 ACP 的生物材料,重点讨论了这些材料在生物学反应方面与晶态对应物的不同之处。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索