Faculdade São Leopoldo Mandic - SLMandic, School of Dentistry, Dental Material Area, Campinas, SP, Brazil.
University of Campinas - Unicamp, Piracicaba Dental School, Department of Restorative Dentistry, Piracicaba, SP, Brazil.
Braz Oral Res. 2022 Jul 11;36:e097. doi: 10.1590/1807-3107bor-2022.vol36.0097. eCollection 2022.
Titanium dioxide nanotubes (TiO2-nts) were incorporated into a glass ionomer cement (GIC) with improved mechanical properties and antibacterial activity. The aims of the present in vitro study were to define the elemental characterization, aluminum (Al) release rate, and initial working time for GIC reinforced with TiO2-nts, in an experimental caries model. TiO2-nts were incorporated into GIC powder components at 5% by weight, and compared with unblended GIC. Experimental approaches used energy-dispersive spectrometry (EDS), atomic absorption spectrophotometry (AAS), and brightness loss to define surface element properties, Al release rates, and initial working time, respectively. Statistical analysis was performed by 2-way ANOVA, Tukey's test, generalized linear models, and Student's t test (a = 0.05). EDS data analysis revealed that TiO2-nts incorporated into GIC had no significant impact on the typical elemental composition of GICs in an in vitro caries model. Regarding the demineralizing solution, GIC with TiO2-nt significantly decreased the Al release rate, compared with the control group (p < 0.0001). Moreover, TiO2-nt incorporated into GIC did not alter the initial working time of the material (p > 0.05). These findings add information to our scientific body of knowledge concerning the potential impact of TiO2-nt on the performance of conventional GICs.
将二氧化钛纳米管 (TiO2-nts) 掺入玻璃离子水门汀 (GIC) 中,以提高机械性能和抗菌活性。本体外研究的目的是定义元素特征、Al 释放率以及 TiO2-nts 增强 GIC 的初始工作时间,以模拟实验性龋齿。将 TiO2-nts 以 5%的重量掺入 GIC 粉末成分中,并与未混合的 GIC 进行比较。使用能量色散光谱 (EDS)、原子吸收分光光度法 (AAS) 和亮度损失分别定义表面元素特性、Al 释放率和初始工作时间。通过 2 因素方差分析、Tukey 检验、广义线性模型和学生 t 检验 (a = 0.05) 进行统计分析。EDS 数据分析表明,在体外龋齿模型中,掺入 GIC 的 TiO2-nts 对 GIC 典型元素组成没有显著影响。关于脱矿溶液,与对照组相比,含 TiO2-nt 的 GIC 显著降低了 Al 释放率 (p < 0.0001)。此外,掺入 TiO2-nt 不会改变材料的初始工作时间 (p > 0.05)。这些发现为我们关于 TiO2-nt 对传统 GIC 性能的潜在影响的科学知识体系增添了信息。