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柠檬酸和氟化钠溶液诱导牙釉质磷灰石结构改变的新见解

New insights into structural alteration of enamel apatite induced by citric acid and sodium fluoride solutions.

作者信息

Wang Xiaojie, Klocke Arndt, Mihailova Boriana, Tosheva Lubomira, Bismayer Ulrich

机构信息

Institute of Mineralogy and Petrology, Department of Earth Sciences, University of Hamburg, Grindelallee 48, D-20146 Hamburg, Germany.

出版信息

J Phys Chem B. 2008 Jul 24;112(29):8840-8. doi: 10.1021/jp802492d. Epub 2008 Jun 28.

Abstract

Attenuated total reflectance infrared spectroscopy and complementary scanning electron microscopy were applied to analyze the surface structure of enamel apatite exposed to citric acid and to investigate the protective potential of fluorine-containing reagents against citric acid-induced erosion. Enamel and, for comparison, geological hydroxylapatite samples were treated with aqueous solutions of citric acid and sodium fluoride of different concentrations, ranging from 0.01 to 0.5 mol/L for citric acid solutions and from 0.5 to 2.0% for fluoride solutions. The two solutions were applied either simultaneously or consecutively. The citric acid-induced structural modification of apatite increases with the increase in the citric acid concentration and the number of treatments. The application of sodium fluoride alone does not suppress the atomic level changes in apatite exposed to acidic agents. The addition of sodium fluoride to citric acid solutions leads to formation of surface CaF2 and considerably reduces the changes in the apatite P-O-Ca framework. However, the CaF2 globules deposited on the enamel surface seem to be insufficient to prevent the alteration of the apatite structure upon further exposure to acidic agents. No evidence for fluorine-induced recovery of the apatite structure was found.

摘要

采用衰减全反射红外光谱和互补扫描电子显微镜分析暴露于柠檬酸的牙釉质磷灰石的表面结构,并研究含氟试剂对柠檬酸诱导侵蚀的防护潜力。用不同浓度的柠檬酸水溶液和氟化钠水溶液处理牙釉质以及作为对照的地质羟磷灰石样品,柠檬酸溶液浓度范围为0.01至0.5 mol/L,氟化物溶液浓度范围为0.5至2.0%。两种溶液同时或相继施加。柠檬酸诱导的磷灰石结构修饰随柠檬酸浓度和处理次数的增加而增加。单独应用氟化钠并不能抑制暴露于酸性试剂的磷灰石在原子水平上的变化。向柠檬酸溶液中添加氟化钠会导致表面CaF2的形成,并显著减少磷灰石P-O-Ca骨架的变化。然而,沉积在牙釉质表面的CaF2小球似乎不足以防止在进一步暴露于酸性试剂时磷灰石结构的改变。未发现氟诱导磷灰石结构恢复的证据。

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