合成用于体外预防龋齿的新型银载粘土 AgF@Hec。

Y S Wang, Y X Shi, Q Q Liu, L Q Hu, F B Ma, J R Zhang, K M Tang, B Tang, J Dai
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引用次数: 0

摘要

龋齿是一种由牙菌斑引起的以牙齿矿物质流失为特征的慢性传染病,是全球主要的公共卫生问题之一。氟化氨银(SDF)具有很强的抑菌和再矿化能力,已被证明是一种高效的防龋药物。然而,SDF 溶液不稳定,极大地限制了其临床应用。因此,本研究用蛭石代替 NH3,设计了一种名为 AgF@Hec 的新型载银粘土。傅立叶变换红外光谱(FTIR)和 X 射线衍射(XRD)光谱被用来确认 AgF@Hec 的结构。利用动态光散射(DLS)分析揭示了不同浓度的蛭石对 AgF@Hec 稳定性的影响。此外,AgF@Hec 对初期龋损的再矿化和硬度恢复效果显著。抑菌实验也证明,它对粘液酵母菌、变异酵母菌、血酵母菌、唾液酵母菌、乳酸杆菌以及革兰氏阳性菌和革兰氏阴性菌都有明显的抑制作用。因此,我们认为 AgF@Hec 是一种很有前景的生物材料,可用于预防龋齿。
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Synthesis of novel silver-loaded clay AgF@Hec for the prevention of dental cariesin vitro.

Dental caries, a chronic infectious disease characterized by tooth mineral loss caused by plaque, is one of the major global public health problems. Silver diamine fluoride (SDF) has been proven to be a highly effective anti-caries drug due to its high bacterial inhibition and remineralization ability. However, the SDF solution is unstable, which immensely limits its clinical application. Therefore, new silver-load clay named AgF@Hec was designed by replacing the NH3with hectorite in this study. Fourier transform infrared spectroscopy and x-ray diffraction spectroscopy were employed to confirm the structure of AgF@Hec. Dynamic light scattering analysis was used to reveal the effect of different hectorite concentrations on the stability of AgF@Hec. Moreover, AgF@Hec exhibits significant remineralization and hardness recovery of the initial carious lesions. Bacteriostatic experiments also proved that it has a significant inhibitory effect onA. Viscosus, S. mutans, S. sanguinis, S. salivarius, Lactobacillus sp.and both gram-positive and gram-negative bacteria. We therefore believed that AgF@Hec should be a promising biomaterial that can be applied in the prevention of dental caries.

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