Dental Materials and Prosthesis Department, Ribeirão Preto School of Dentistry, University of São Paulo, 14040-904 Ribeirão Preto, SP, Brazil.
Laboratory of Solid State Chemistry, Institute of Chemistry, University of Campinas (Unicamp), 13083-970 Campinas, SP, Brazil.
Biomed Res Int. 2019 May 9;2019:4676354. doi: 10.1155/2019/4676354. eCollection 2019.
The incorporation of nanoparticles into endodontic sealers aims at increasing antimicrobial activity of the original material. The aim of this study is to incorporate the nanostructured silver vanadate decorated with silver nanoparticles (AgVO, at 2.5%, 5%, and 10%) into three endodontic sealers and evaluate the antibacterial activity of freshly sealers, surface topography and chemical composition, and setting time. . The AgVO was incorporated into AH Plus, Sealer 26, and Endomethasone N at concentrations 0%, 2.5%, 5%, and 10% (in mass). The antibacterial activity of freshly sealers was assessed by direct contact with and CFU/mL count (n=10), surface topography, and chemical composition were measured by SEM/EDS, and the setting time was measured by Gillmore needle (n=10). The Kruskal-Wallis and Dunn statistical tests were applied (=0.05). All groups of sealers evaluated inhibited (p>0.05). The incorporation of AgVO altered the atomic proportions between components of the endodontic sealers, and the percentage of silver (Ag) and vanadium (V) increased proportionally to the concentrations of AgVO. Topography analysis showed differences in components distribution on the surface of the specimens. The sealers incorporated with AgVO of AH Plus presented a lower setting time than the control group (p<0.05). For Sealer 26 and Endomethasone N, the incorporation of AgVO increased the setting time in relation to control group (p<0.05). The modification of endodontic sealers by AgVO increased the atomic percentage of Ag and V proportionally to the concentration of the nanomaterial and changed the atomic percentage of the sealer components and setting times. It cannot be affirmed that the AgVO promote differences in the antimicrobial activity of freshly sealers, and further investigations of the antimicrobial activity of the set sealers should be carried out.
将纳米粒子纳入根管封闭剂的目的是提高原始材料的抗菌活性。本研究的目的是将纳米结构的钒酸银用银纳米粒子进行修饰(AgVO,浓度为 2.5%、5%和 10%),并将其纳入三种根管封闭剂中,评估新鲜封闭剂的抗菌活性、表面形貌和化学成分以及凝固时间。AgVO 以 0%、2.5%、5%和 10%(质量比)的浓度被纳入到 AH Plus、Sealer 26 和 Endomethasone N 中。通过与 和 CFU/mL 计数的直接接触评估新鲜封闭剂的抗菌活性(n=10),通过 SEM/EDS 测量表面形貌和化学成分,通过 Gillmore 针测量凝固时间(n=10)。应用 Kruskal-Wallis 和 Dunn 统计检验(=0.05)。所有评估的封闭剂组均抑制 (p>0.05)。AgVO 的掺入改变了根管封闭剂成分之间的原子比例,银(Ag)和钒(V)的百分比与 AgVO 的浓度成比例增加。形貌分析显示出试样表面成分分布的差异。含有 AH Plus 中的 AgVO 的封闭剂的凝固时间比对照组低(p<0.05)。对于 Sealer 26 和 Endomethasone N,与对照组相比,AgVO 的掺入增加了凝固时间(p<0.05)。AgVO 对根管封闭剂的改性使 Ag 和 V 的原子百分比与纳米材料的浓度成比例增加,同时改变了封闭剂成分的原子百分比和凝固时间。不能肯定 AgVO 会导致新鲜封闭剂抗菌活性的差异,应该对凝固封闭剂的抗菌活性进行进一步研究。