[Studies on fluoride mouth-rinsing solution for dental caries prevention. II. Fluoride uptake and acid solubility].

M. Kani, T. Kani, S. Iino, A. Isozaki, Y. Takahashi
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引用次数: 1

Abstract

The effect of fluoride mouth-rinsing solution on human enamel was examined by means of electron probe microanalysis and X-ray diffraction. Experiments were made in vitro by applications of phosphoric acid-acidified NaF solution (500 ppm of F-; pH 5.0) to the intact enamel.The distribution of fluorine, calcium and phosphorus in enamel following the topical fluoride treatment (30 minutes every day for 8 weeks) were demonstrated by electron probe microanalysis.X-ray diffractometry was performed by the use of X-ray microfocus diffraction. Reaction roducts and crystallinity of the enamel were observed in the X-ray diffraction pattern obtained with a microphotometer. The variation of crystallinity was estimated from the half-maximum breadth values (310), (002) reflections of enamel apatite.Electron probe microanalysis shows that the fluorine concentration of surface enamel was increased not only on flat surfaces but also in fissure areas by the repeated use of fluoride mouthrinsing solution. Espeiaclly high concentration of fluorine was observed at the subsurface decalcified area of the enamel surface.In the X-ray diffraction experiments, no reaction product was detected. The crystallinity of enamel apatite of the surface layer was increased in both a- and c-axis directions by application of fluoride mouth-rinsing solution. In the inner layer it seemed that the crystallinity of enamel apatite in the a-axis was also increased by the use of fluoride mouth rinse.
氟化物漱口水预防龋齿的研究。2氟吸收和酸溶解度]。
采用电子探针显微分析和x射线衍射法研究了含氟漱口液对人牙釉质的影响。体外实验采用磷酸酸化NaF溶液(500 ppm F-;pH值5.0)使牙釉质保持完整。应用电子探针微量分析方法,观察局部氟化治疗(每天30分钟,连续8周)后牙釉质中氟、钙、磷的分布情况。采用x射线微焦衍射进行x射线衍射。用显微光度计观察了反应产物和牙釉质的结晶度。通过珐琅磷灰石的半最大宽度值(310)和(002)反射来估计结晶度的变化。电子探针微量分析表明,反复使用含氟漱口液不仅能提高牙釉质表面的氟浓度,而且能提高牙釉质表面的氟浓度。在牙釉质表面下脱钙区氟浓度特别高。在x射线衍射实验中,未检测到反应产物。氟化漱口液在a-轴和c-轴方向上均能提高表层牙釉质磷灰石的结晶度。在内层,使用含氟漱口水似乎也增加了a轴珐琅质磷灰石的结晶度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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