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Exploring Needle-Like Zinc Oxide Nanostructures for Improving Dental Resin Sealers: Design and Evaluation of Antibacterial Physical and Chemical Properties

机译:探索针状氧化锌纳米结构以改善牙科树脂封闭剂:抗菌物理和化学性质的设计和评估

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摘要

This study aimed to evaluate the effect of needle-like zinc oxide nanostructures (ZnO-NN) on the physical, chemical, and antibacterial properties of experimental methacrylate-based dental sealers. ZnO-NN was synthesized and characterized. ZnO-NN was added to a co-monomer blend at 20, 30, and 40 wt.%. One group without ZnO-NN was used as a control. The dental resin sealers were evaluated for their flow, film thickness, water sorption, solubility, radiopacity, degree of conversion (DC), dental-sealer interface characterization via micro-Raman, and antibacterial activity. ZnO-NN presented a mean needle diameter of 40 nm and 16 m /g of surface area. There was no difference among groups containing ZnO-NN regarding their flow. The ZnO-NN addition significantly increased the film thickness. Water sorption and solubility tests showed no difference among groups. The radiopacity increased, and DC decreased with higher concentrations of ZnO-NN. Micro-Raman suggested that ZnO-NN was in close contact with root canal dentin. Overall, the incorporation of ZnO-NN provided an antibacterial effect against without a significant detrimental impact on the physical and chemical functionality of the material. The use of ZnO-NN as an inorganic filler is a potential application within dental materials intended for root canal treatment.
机译:这项研究旨在评估针状氧化锌纳米结构(ZnO-NN)对基于实验的甲基丙烯酸酯类牙科封闭剂的物理,化学和抗菌性能的影响。合成并表征了ZnO-NN。 ZnO-NN以20、30和40 wt。%的比例添加到共聚单体混合物中。一组没有ZnO-NN的用作对照。评估了牙科树脂密封剂的流量,膜厚,吸水率,溶解度,射线不透性,转化度(DC),通过微拉曼表征的牙科密封器界面和抗菌活性。 ZnO-NN的平均针头直径为40 nm,表面积为16 m / g。含有ZnO-NN的组之间的流量没有差异。 ZnO-NN的添加显着增加了膜的厚度。吸水率和溶解度测试表明各组之间没有差异。随着ZnO-NN浓度的增加,射线不透性增加,DC降低。 Micro-Raman认为ZnO-NN与根管牙本质紧密接触。总体而言,ZnO-NN的掺入提供了抗菌作用,而对材料的物理和化学功能没有明显的不利影响。 ZnO-NN作为无机填料的用途可能在用于根管治疗的牙科材料中。

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