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Fluorinated Bioactive Glass Nanoparticles: Enamel Demineralization Prevention and Antibacterial Effect of Orthodontic Bonding Resin

机译:氟化生物活性玻璃纳米颗粒:牙釉质脱矿和正畸粘合树脂的抗菌作用

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摘要

Orthodontic treatment involving the bonding of fixed appliances to tooth surfaces can cause white spot lesions (WSLs). WSLs increase the likelihood of cavity formation and hence require preservation and prosthetic restoration. Therefore, the prevention of WSLs is of greater importance than treatment. Application of fluoride or the use of fluoride-containing mouthwash can prevent WSLs, but this requires patient cooperation and additional time and cost. Bioactive glass containing 2.5% fluoride was synthesized and mixed with the orthodontic bonding adhesive Transbond XT Low Flow (LV) at ratios of 1, 3, and 5% to prepare orthodontic adhesive samples. Scanning electron microscopy (SEM) and X-ray diffraction (XRD) were used to characterize the samples. The Vickers hardness test, bracket retention test, and adhesive remnant index (ARI) of the samples were analysed to determine their mechanical properties. To determine the biological cytotoxicity, the cell activity of the samples was evaluated using cell viability tests and the antibacterial activity was analysed using Streptococcus mutans. To evaluate the anti-demineralization effect, the sample was bonded to extracted teeth and a pH cycle test was performed. Micro computed tomography data were obtained from the bonded teeth and sample, and the anti-demineralization effect was evaluated using the ImageJ software program. The Vickers hardness of the sample was higher than that of LV and was dependent on the concentration of fluoride-containing bioactive glass (FBAG). The bracket retention test and ARI of the sample showed no significant differences from those of LV. The cell viability test showed no significant changes at 24 and 48 h after application of the sample. The fluoride ion release test indicated an ion release rate of 9.5–17.4 μg/cm2. The antibacterial activity of the experimental group containing FBAG was significantly higher than that of the LV group. The anti-demineralization test showed a concentration-dependent increase. However, the resin containing 5 mass% FBAG (FBAG5) showed a statistically-significant increase compared with LV. The orthodontic adhesive containing FBAG showed antibacterial and anti-demineralization effects, thus indicating possible WSL prevention activity.
机译:涉及将固定矫治器粘合到牙齿表面的正畸治疗可能会导致白斑病变(WSL)。 WSL增加了腔形成的可能性,因此需要保存和修复假体。因此,预防WSL比治疗更重要。使用氟化物或使用含氟漱口水可以预防WSL,但这需要患者的配合以及更多的时间和成本。合成包含2.5%氟化物的生物活性玻璃,并与正畸粘合粘合剂Transbond XT Low Flow(LV)以1、3和5%的比例混合,以制备正畸粘合样品。使用扫描电子显微镜(SEM)和X射线衍射(XRD)表征样品。分析了样品的维氏硬度测试,托槽保持测试和粘合剂残留指数(ARI),以确定它们的机械性能。为了确定生物细胞毒性,使用细胞生存力测试评估样品的细胞活性,并使用变形链球菌分析抗菌活性。为了评估抗脱矿化作用的效果,将样品粘结到拔出的牙齿上并进行pH循环测试。从粘合的牙齿和样品中获得了显微计算机断层扫描数据,并使用ImageJ软件程序评估了抗脱矿化作用。样品的维氏硬度高于LV,并且取决于含氟生物活性玻璃(FBAG)的浓度。样品的托槽保持力测试和ARI与LV没有显着差异。细胞活力测试显示在施加样品后24和48小时没有明显变化。氟离子释放测试表明离子释放速率为9.5–17.4μg/ cm 2 。含有FBAG的实验组的抗菌活性明显高于LV组。抗脱矿质测试显示浓度依赖性增加。但是,与LV相比,含有5质量%的FBAG(FBAG5)的树脂显示出统计学上的显着增加。含有FBAG的正畸粘合剂显示出抗菌和抗脱矿化作用,因此表明可能具有预防WSL的活性。

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