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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Effect of CPP-ACP on the remineralization of acid-eroded human tooth enamel: Nanomechanical properties and microtribological behaviour study
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Effect of CPP-ACP on the remineralization of acid-eroded human tooth enamel: Nanomechanical properties and microtribological behaviour study

机译:CPP-ACP对酸蚀人牙釉质再矿化的影响:纳米力学性能和微摩擦学行为研究

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摘要

Casein phosphopeptide-stabilized amorphous calcium phosphate (CPP-ACP) has been used to enhance tooth remineralization in the dental clinic. But the contribution of CPP-ACP to the remineralization of acid-eroded human tooth enamel is of widespread controversy. To confirm the application potential of CPP-ACP in the remineralization repair of tooth erosion caused by acid-attack, the effect of remineralization in vitro in 2% w/v CPP-ACP solution on the acid-eroded human tooth enamel was investigated in this study. The repair of surface morphology and the improvement of nanomechanical and microtribological properties were characterized with laser confocal scanning microscope, scanning electron microscope, nanoindentation tester and nanoscratch tester. Results showed that a layer of uneven mineral deposits, which were mainly amorphous calcium phosphate (ACP) in all probability, was observed on the acid-eroded enamel surface after remineralization. Compared with the acid-eroded enamel surface, the nanoindentation hardness and Young's modulus of the remineralized enamel surface obviously increased. Both the friction coefficient and wear volume of the acid-eroded enamel surface decreased after remineralization. However, both the nanomechanical and the anti-wear properties of the remineralized enamel surface were still inferior to those of original enamel surface. In summary, tooth damage caused by acid erosion could be repaired by remineralization in CPP-ACP solution, but the repair effect, especially on the nanomechanical and anti-wear properties of the acid-eroded enamel, was limited. These results would contribute to a further exploration of the remineralization potential of CPP-ACP and a better understanding of the remineralization repair mechanism for acid-eroded human tooth enamel.
机译:酪蛋白磷酸肽稳定的无定形磷酸钙(CPP-ACP)已用于增强牙科诊所的牙齿再矿化。但是,CPP-ACP对酸蚀人类牙齿珐琅质再矿化的贡献存在广泛争议。为了确认CPP-ACP在酸攻击引起的牙齿侵蚀的再矿化修复中的应用潜力,本文研究了在2%w / v CPP-ACP溶液中体外再矿化对酸侵蚀的人牙釉质的影响。研究。用激光共聚焦扫描显微镜,扫描电子显微镜,纳米压痕测试仪和纳米划痕测试仪表征了表面形态的修复以及纳米力学和微摩擦学性能的改善。结果表明,在再矿化后的酸蚀搪瓷表面观察到一层不均匀的矿床沉积物,主要是无定形磷酸钙(ACP)。与酸蚀搪瓷表面相比,再矿化搪瓷表面的纳米压痕硬度和杨氏模量明显增加。再矿化后,酸蚀搪瓷表面的摩擦系数和磨损量均降低。然而,再矿化的搪瓷表面的纳米机械性能和抗磨性能仍然不如原始搪瓷表面。综上所述,可以通过在CPP-ACP溶液中再矿化来修复由​​酸蚀引起的牙齿损伤,但是修复效果,尤其是对酸蚀釉质的纳米机械性能和抗磨性能的限制。这些结果将有助于进一步探索CPP-ACP的再矿化潜力,并更好地理解酸蚀人牙釉质的再矿化修复机理。

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