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Fluoride-doped amorphous calcium phosphate nanoparticles as a promising biomimetic material for dental remineralization

机译:氟掺杂无定形磷酸钙纳米粒子作为牙科再矿化的有希望的仿生材料

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Demineralization of dental hard tissue is a widespread problem and the main responsible for dental caries and dentin hypersensitivity. The most promising strategies to induce the precipitation of new mineral phase are the application of materials releasing gradually Ca2+ and PO43? ions or mimicking the mineral phase of the host tissue. However, the design of formulations covering both processes is so far a challenge in preventive dentistry. In this work, we have synthesized innovative biomimetic amorphous calcium phosphate (ACP), which has been, for the first time, doped with fluoride ions (FACP) to obtain materials with enhanced anti-caries and remineralizing properties. Significantly, the doping with fluoride (F) did not vary the physico-chemical features of ACP but resulted in a faster conversion to the crystalline apatite phase in water, as observed by in-situ time-dependent Raman experiments. The efficacy of the as synthesized ACP and FACP samples to occlude dentinal tubules and induce enamel remineralization has been tested in vitro in human molar teeth. The samples showed good ability to partially occlude the tubules of acid-etched dentin and to restore demineralized enamel into its native structure. Results demonstrate that ACP and FACP are promising biomimetic materials in preventive dentistry to hinder demineralization of dental hard tissues.
机译:牙科硬组织的脱矿是一种广泛的问题,主要负责龋齿和牙本质过敏的主要问题。诱导新型矿物阶段沉淀最有希望的策略是应用材料逐渐释放Ca2 +和PO43?离子或模仿宿主组织的矿物相。然而,覆盖两个过程的配方设计是对预防性牙科的挑战。在这项工作中,我们已经合成了创新的仿生无定形磷酸钙(ACP),这是首次掺杂氟离子(FACP),以获得具有增强的抗龋齿和再矿化性能的材料。值得注意的是,氟化物(F)的掺杂没有改变ACP的物理化学特征,但是通过原位时间依赖性拉曼实验所观察到的,在水中的晶磷灰石相更快地转化。在人摩尔牙齿的体外测试了作为诱导牙本质小管和诱导牙釉质再矿化的诱导牙本质管和诱导牙釉质再矿化的疗效。样品显示出良好的能力,可以抵御酸蚀刻牙本质的小管并将脱矿化釉质恢复到其天然结构中。结果表明,ACP和FACP在预防性牙科的仿生材料是妨碍牙科硬组织的脱矿质。

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