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含氟八钙磷衍生氟磷灰石在多元醇和氟化物存在下的表面反应性。

Surface reactivity of octacalcium phosphate-derived fluoride-containing apatite in the presence of polyols and fluoride.

机构信息

Division of Craniofacial Function Engineering, Tohoku University Graduate School of Dentistry, Sendai, 980-8575, Japan.

Liaison Center for Innovative Dentistry, Tohoku University Graduate School of Dentistry, Sendai, 980-8575, Japan.

出版信息

J Biomed Mater Res B Appl Biomater. 2018 Aug;106(6):2235-2244. doi: 10.1002/jbm.b.34026. Epub 2017 Oct 27.

Abstract

The present study was designed to characterize co-precipitated fluoridated apatitic materials from octacalcium phosphate (OCP) precursor and to investigate their surface reactions with polyols including glycerol in the presence of fluoride ions. Laboratory-synthesized fluoridated apatite crystals (LS-FA) were obtained in a solution containing fluoride (F) from 25 to 500 ppm. LS-FAs and commercially available fluoroapatite (FA) and hydroxyapatite (HA) were characterized by physical techniques, such as X-ray diffraction. LS-FA obtained in the presence of 100 ppmF (100 ppm-LS-FA) had an apatitic structure, but its solubility was close to HA in a culture medium (α-MEM) despite the fact it contains over 3 wt % of F. 100 ppm-LS-FA, FA, and HA were then subjected to the human serum albumin (HSA) adsorption test at pH 7.4 (in a 150 mM Tris-HCl buffer) and the dissolution and re-mineralization experiments in the presence of xylitol, D-sorbitol, or glycerol, and F under acidic and neutral conditions. Adsorption affinity of HSA was estimated as highest for FA and lowest for LS-FA. LS-FA, FA, and HA were immersed in a lactic acid solution with the polyols and/or F ion-containing solution up to 200 ppm to analyze the dissolution behavior. LS-FA had the highest dissolution tendency in the conditions examined. Glycerol enhanced the dissolution of phosphate from apatite crystals in particular from LS-FA. The results suggest that the apatite crystals, obtained through the hydrolysis of OCP in the presence of F, provide a more reactive surface than FA or HA under physiological environments. © 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 106B: 2235-2244, 2018.

摘要

本研究旨在描述八钙磷酸盐(OCP)前体共沉淀氟化磷灰石材料的特性,并研究其在氟离子存在下与多元醇(包括甘油)的表面反应。在含有氟(F)的溶液中,从 25 到 500 ppm 的实验室合成的氟化磷灰石晶体(LS-FA)。LS-FA 和市售的氟磷灰石(FA)和羟基磷灰石(HA)通过物理技术进行了表征,如 X 射线衍射。在存在 100 ppmF 的情况下获得的 LS-FA(100 ppm-LS-FA)具有磷灰石结构,但在培养基(α-MEM)中的溶解度接近 HA,尽管其含有超过 3wt%的 F。然后将 100 ppm-LS-FA、FA 和 HA 进行人血清白蛋白(HSA)吸附试验,在 pH7.4(在 150 mM Tris-HCl 缓冲液中),并在酸性和中性条件下,在木糖醇、D-山梨醇或甘油和 F 存在下进行溶解和再矿化实验。HSA 的吸附亲和力估计为 FA 最高,LS-FA 最低。LS-FA、FA 和 HA 被浸泡在含有多元醇和/或 F 离子的乳酸溶液中,浓度高达 200 ppm,以分析溶解行为。在研究的条件下,LS-FA 的溶解趋势最高。甘油特别增强了磷灰石晶体(包括 LS-FA)中磷酸盐的溶解。结果表明,在生理环境下,通过 OCP 在 F 存在下的水解获得的磷灰石晶体提供了比 FA 或 HA 更具反应性的表面。©2017 Wiley Periodicals,Inc. J Biomed Mater Res Part B:Appl Biomater,106B:2235-2244,2018。

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