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Zinc Oxide Nanoparticles Enhance Physicochemical Characteristics of Grossman Sealer

机译:氧化锌纳米颗粒增强Grossman Sealer的理化特性

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Introduction: Metallic antibacterial nanoparticles have been shown to provide distinct antibacterial advantage and antibiofilm efficacy when applied in infected root canals. The purpose of this study was to evaluate the influence of incorporating zinc oxide nanoparticles (ZnO-Np) on the physicochemical properties of Grossman sealer. Methods: Grossman sealer was prepared according to its original formula. Additionally, 4 experimental sealers were prepared by replacing the zinc oxide component of the powder with ZnO-Np (average size of 20 nm) in different amounts (25%, 50%, 75%, and 100%). Characterization of the setting time, flow, solubility, dimensional changes, and. radiopacity were performed according to American National Standards Institute (ANSI)/American Dental Association (ADA) Specification 57. Scanning electron microscopic and energy-dispersive X-ray spectroscopic analyses were conducted to assess the ultrastructural and chemical characteristics of experimental sealers subjected to the solubility test. Statistical analyses were performed with analysis of variance and post hoc Tukey-Kramer tests with a significance level of 5%. Results: A statistically significant difference in the setting time was observed among groups (P < .05), but only 25% ZnO-Np sealer complied with ANSI/ADA requirements. There was a significant difference in the flow characteristics between the control and 25% and 75% ZnO-Np experimental sealers (P < .05), but all sealers conformed to ANSI/ADA standardization; 25% ZnO-Np sealer showed significantly less solubility (1.81% +/- 0.31%) and dimensional change (-0.34% +/- 0.12%) than other sealers (P < .05). All sealers showed ultrastructural changes with increasing solubility. Conclusions: ZnO-Np decreased the setting time and dimensional changes characteristic of Grossman sealer; 25% ZnO-Np improved the physicochemical properties of Grossman sealer in accordance with ANSI/ADA requirements.
机译:简介:金属抗菌纳米粒子已显示在感染的根管中提供独特的抗菌优势和抗生物膜功效。这项研究的目的是评估掺入氧化锌纳米粒子(ZnO-Np)对Grossman封闭剂的理化性质的影响。方法:按照原配方制备格罗斯曼密封剂。另外,通过用不同量(25%,50%,75%和100%)的ZnO-Np(平均尺寸为20 nm)代替粉末中的氧化锌成分,制备了4种实验性密封剂。固化时间,流量,溶解度,尺寸变化等的表征。根据美国国家标准协会(ANSI)/美国牙科协会(ADA)规范57进行射线不透性测试。进行扫描电子显微镜和能量色散X射线光谱分析以评估在溶解度下实验性密封剂的超微结构和化学特性测试。使用方差分析和事后Tukey-Kramer检验进行统计分析,显着性水平为5%。结果:各组之间的凝结时间差异有统计学意义(P <.05),但只有25%的ZnO-Np密封胶符合ANSI / ADA的要求。对照和25%和75%ZnO-Np实验密封剂之间的流动特性存在显着差异(P <.05),但所有密封剂均符合ANSI / ADA标准化; 25%的ZnO-Np密封胶的溶解度(1.81%+/- 0.31%)和尺寸变化(-0.34%+/- 0.12%)明显低于其他密封胶(P <.05)。所有封闭剂均显示出随着溶解度增加而发生的超微结构变化。结论:ZnO-Np减少了Grossman封口机的凝固时间和尺寸变化特征。 25%的ZnO-Np符合ANSI / ADA要求,改善了Grossman密封剂的物理化学性能。

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