首页> 外文期刊>European journal of oral sciences >The effects of fluoride on the nanostructure and surface pK of enamel crystals: an atomic force microscopy study of human and rat enamel.
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The effects of fluoride on the nanostructure and surface pK of enamel crystals: an atomic force microscopy study of human and rat enamel.

机译:氟化物对珐琅质晶体的纳米结构和表面pK的影响:人类和大鼠珐琅质的原子力显微镜研究。

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摘要

Atomic force microscopy (AFM) studies have revealed 30-40 nm-wide regular positively charged bands across maturation-stage rat enamel crystals. Low pH resolved these into positively charged spherical domains of approximately 30 nm diameter. Crystal surface pK values from adhesion force titrations were approximately 6.5. The effect of fluoride on this pK value and on the nanostructure of fluorosed human enamel crystals has not been reported. The nanostructure and surface chemistry (pK) of normal and fluorotic human and of fluoride-treated rat maturing enamel crystals was examined. Enamel was sectioned and polished, prior to examination, using AFM in height and friction modes. High-resolution height images revealed 30 nm-diameter spherical domains within crystals, arranged as layers of hexagons or as a shallow spiral. Fluorotic enamel showed similar, but less well ordered, nanodomains. These could represent an arrangement of original initiation sites or binding sites for modulating matrix proteins. Surface pK was derived from adhesion-force measurements between functionalized tips (OH or COOH) and crystal surfaces between pH 2 and pH 10. pK values of approximately 6.5 for normal crystals were reduced to approximately 5.5 after fluoride treatment. Reduction in surface pK by fluoride might indicate lowered protonation with possible effects on matrix protein binding.
机译:原子力显微镜(AFM)研究表明,成熟阶段的大鼠牙釉质晶体上具有30-40 nm宽的规则带正电。低pH将其解析为直径约30 nm的带正电的球形区域。来自粘附力滴定的晶体表面pK值约为6.5。尚未报道氟化物对该pK值以及氟化人牙釉质晶体纳米结构的影响。检查了正常人和含氟人以及氟化物处理的大鼠成熟牙釉质晶体的纳米结构和表面化学(pK)。在检查之前,在高度和摩擦模式下使用AFM对搪瓷进行切片和抛光。高分辨率的高度图像显示出晶体内直径为30 nm的球形区域,排列为六边形层或浅螺旋形。氟搪瓷显示相似但有序的纳米域。这些可以代表用于调节基质蛋白的原始起始位点或结合位点的排列。表面pK来自官能化尖端(OH或COOH)与pH 2和pH 10之间的晶体表面之间的粘附力测量。氟化物处理后,正常晶体的pK值大约为6.5,降至约5.5。氟化物降低表面pK可能表明质子化降低,可能对基质蛋白结合产生影响。

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