Oral Health Prev Dent. 2021 Jan 26;19:59-65. doi: 10.3290/j.ohpd.b898957.
The topical fluoride treatment of teeth can lead to a formation of CaF2-like material, which is considered to play a significant role in caries prevention. Different types of fluoride sources are applied. The aim of this study was to analyse the in vitro fluoridation effect of the lesser known organic fluoride compound nicomethanol hydrofluoride (NH) regarding fluoride accumulation and morphological changes on dental enamel surfaces. Materials and Methods: The fluoridation effect was investigated by scanning electron microscopy (SEM) and energy dispersive x-ray analysis (EDX) after treatment with fluoride solutions at a concentration of 1350 ppm F - and a pH value of 5.5. NH was tested against inorganic sodium fluoride (NaF) as reference. Fluoridation was done on pellicle-free and pellicle-covered enamel. Results: Formation of globular CaF2-like material was observed for both fluoride types. However, NH led to considerably higher calcium fluoride accumulation on the enamel surface as shown by both EDX and SEM. The globule diameters varied between 0.2 and 0.8 µm. Cross-sectional analysis revealed that the globular precipitates lay directly on the enamel surface; only the very surface-near volume was affected. No statistically significant difference of the fluoridation effect was measured with vs without saliva pre-treatment. Conclusion: The experiments showed a 6 times greater F - surface uptake on dental enamel with NH compared to sodium fluoride, thus suggesting an important role of NH during remineralization phases, fostering equilibrium between de- and remineralization.
牙齿的局部氟化物处理会导致形成类似 CaF2 的物质,这被认为在预防龋齿方面起着重要作用。不同类型的氟化物来源被应用。本研究的目的是分析鲜为人知的有机氟化物化合物尼甲醇氢氟化物(NH)对牙齿 enamel 表面氟化物积累和形态变化的体外氟化物效应。
用扫描电子显微镜(SEM)和能量色散 X 射线分析(EDX)在浓度为 1350ppm F-和 pH 值为 5.5 的氟化物溶液处理后,研究了氟化物的氟化物作用。NH 被测试为参考无机氟化钠(NaF)。在无牙菌斑和有牙菌斑的 enamel 上进行了氟化物处理。
两种氟化物类型都观察到形成球状类似 CaF2 的物质。然而,NH 导致 enamel 表面的氟化钙积累量明显更高,这一点通过 EDX 和 SEM 都得到了证实。球状直径在 0.2 到 0.8μm 之间变化。横截面分析表明,球状沉淀物直接位于 enamel 表面;只有非常靠近表面的体积受到影响。唾液预处理与不预处理相比,氟化物效应没有统计学上的显著差异。
实验表明,与氟化钠相比,NH 在牙齿 enamel 上的 F-表面吸收率高 6 倍,这表明 NH 在再矿化阶段具有重要作用,促进了脱矿质和再矿化之间的平衡。