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Synthetic Biomimetic Carbonate-Hydroxyapatite Nanocrystals for Enamel Remineralization

机译:用于牙釉质再矿化的合成生物摩托碳酸酯 - 羟基磷灰石纳米晶体

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New biomimetic carbonate-hydroxyapatite nanocrystals (CHA) have been designed and synthesized in order to obtain a remineralization of the altered enamel surfaces. Synthesized CHA mimic for composition, structure, nano dimension and morphology bone apatite crystals and their chemical-physical properties resemble closely those exhibited by enamel natural apatite. CHA can chemically bound themselves on the surface of natural enamel apatite thanks to their tailored biomimetic characteristics. The remineralization effect induced by CHA represents a real new deposition of carbonate-hydroxyapatite into the eroded enamel surface scratches forming a persistent biomimetic mineral coating, which covers and safeguards the enamel structure. The experimental results point out the possibility to use materials alternative to fluoride compounds which is commonly utilized to contrast the mechanical abrasions and acid attacks. The apatitic synthetic coating is less crystalline than enamel natural apatite, but consists of a new biomimetic apatitic mineral deposition which progressively fills the surface scratches. Therefore the application of biomimetic CHA may be considered an innovative approach to contrast the acid and bacteria attacks.
机译:新的碳酸酯 - 羟基磷灰石纳米晶(CHA)已经设计和合成,以获得改变改变的搪瓷表面的再矿化。合成的CHA模拟成分,结构,纳米尺寸和形态学性骨磷灰石晶体及其化学物理性质与牙釉质天然磷灰石展示的相似性。由于其量身定制的仿生特性,CHA可以在天然搪瓷磷灰石的表面上进行化学束缚。 CHA诱导的再矿化效果代表碳酸酯 - 羟基磷灰石的真正新沉积到形成持续的仿生矿物涂层的侵蚀牙釉质表面划痕,其覆盖并保护搪瓷结构。实验结果指出可能使用材料替代氟化物化合物的可能性,这通常用于对比机械擦伤和酸攻击进行对比。 apatitic合成涂层比搪瓷天然磷灰石更少结晶,而是由新的仿生素矿物沉积组成,逐渐填充表面划痕。因此,仿生CHA的应用可以被认为是一种创新的酸和细菌攻击的方法。

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