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生物磷灰石的层次结构。

Hierarchy of Bioapatites.

机构信息

ComerLab Dorota Nowak, Radawiec Duży 196, 21-030 Motycz, Poland.

Department of Orthopaedics and Rehabilitation, Medical University of Lublin, K. Jaczewskiego 8, 20-090 Lublin, Poland.

出版信息

Int J Mol Sci. 2022 Aug 23;23(17):9537. doi: 10.3390/ijms23179537.

Abstract

Apatites are one of the most intensively studied materials for possible biomedical applications. New perspectives of possible application of apatites correspond with the development of nanomaterials and nanocompounds. Here, an effort to systematize different kinds of human bioapatites forming bones, dentin, and enamel was undertaken. The precursors of bioapatites and hydroxyapatite were also considered. The rigorous consideration of compositions and stoichiometry of bioapatites allowed us to establish an order in their mutual sequence. The chemical reactions describing potential transformations of biomaterials from octacalcium phosphate into hydroxyapatite via all intermediate stages were postulated. Regardless of whether the reactions occur in reality, all apatite biomaterials behave as if they participate in them. To conserve the charge, additional free charges were introduced, with an assumed meaning to be joined with the defects. The distribution of defects was coupled with the values of crystallographic parameters "" and "". The energetic balances of bioapatite transformations were calculated. The apatite biomaterials are surprisingly regular structures with non-integer stoichiometric coefficients. The results presented here will be helpful for the further design and development of nanomaterials.

摘要

磷灰石是研究最多的可能用于生物医学应用的材料之一。磷灰石新的应用前景与纳米材料和纳米复合物的发展相对应。在这里,我们努力对形成骨骼、牙本质和牙釉质的不同类型的人源性生物磷灰石进行了系统的研究。生物磷灰石和羟基磷灰石的前体也被考虑在内。对生物磷灰石的组成和化学计量的严格考虑,使我们能够确定它们相互顺序的顺序。提出了描述生物材料从八钙磷酸盐通过所有中间阶段向羟基磷灰石转化的潜在化学反应。无论这些反应是否实际发生,所有的磷灰石生物材料都表现得好像它们参与了这些反应。为了保持电荷平衡,引入了额外的自由电荷,并假设与缺陷结合。缺陷的分布与晶体学参数 "" 和 "" 的值相关联。生物磷灰石转化的能量平衡被计算出来。磷灰石生物材料是具有非整数化学计量系数的惊人规则结构。这里呈现的结果将有助于进一步设计和开发纳米材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/795a/9455617/6d5d0fabb66f/ijms-23-09537-g001.jpg

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