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首页> 外文期刊>Journal of nanomaterials >Surface Enamel Remineralization: Biomimetic Apatite Nanocrystals and Fluoride Ions Different Effects
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Surface Enamel Remineralization: Biomimetic Apatite Nanocrystals and Fluoride Ions Different Effects

机译:表面搪瓷再矿化:仿生磷灰石纳米晶体和氟离子的不同作用

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A new method for altered enamel surface remineralization has been proposed . To this aim carbonate-hydroxyapatite nanocrystals which mimic for composition, structure, nanodimensions, and morphology dentine apatite crystals and resemble closely natural apatite chemical-physical properties have been used. The results underline the differences induced by the use of fluoride ions and hydroxyapatite nanocrystals in contrasting the mechanical abrasions and acid attacks to which tooth enamel is exposed. Fluoride ions generate a surface modification of the natural enamel apatite crystals increasing their crystallinity degree and relative mechanical and acid resistance. On the other hand, the remineralization produced by carbonate-hydroxyapatite consists in a deposition of a new apatitic mineral into the eroded enamel surface scratches. A new biomimetic mineral coating, which progressively fills and shadows surface scratches, covers and safeguards the enamel structure by contrasting the acid and bacteria attacks.
机译:提出了一种改变牙釉质表面再矿化的新方法。为了这个目的,已经使用了碳酸盐-羟基磷灰石纳米晶体,其模拟了组成,结构,纳米尺寸和形态的牙本质磷灰石晶体并且非常类似于天然磷灰石的化学-物理性质。结果强调了氟离子和羟基磷灰石纳米晶体的使用所引起的差异,这与牙釉质所暴露的机械磨损和酸侵蚀形成对比。氟离子产生天然搪瓷磷灰石晶体的表面改性,从而增加其结晶度以及相对的机械和耐酸性。另一方面,由碳酸盐-羟基磷灰石产生的再矿化在于将新的磷灰石矿物沉积到侵蚀的搪瓷表面划痕中。一种新型的仿生矿物涂层,可逐渐填充和遮盖表面划痕,并通过对比酸和细菌的侵蚀来覆盖和保护牙釉质结构。

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