Department of Dentistry, Ng Teng Fong General Hospital, National University Health System, Singapore; Department of Restorative Dentistry, Faculty of Dentistry, University of Malaya, Malaysia; Faculty of Dentistry, National University of Singapore, Singapore; Duke-NUS Medical School, Singapore; National Dental Research Institute Singapore, National Dental Centre Singapore, Singapore.
Department of Restorative Dentistry, Faculty of Dentistry, University of Malaya, Malaysia.
J Mech Behav Biomed Mater. 2021 Jan;113:104120. doi: 10.1016/j.jmbbm.2020.104120. Epub 2020 Oct 1.
This study determined the effects of self-adhesive resin coatings on viscoelastic properties of highly viscous glass ionomer cements (HVGICs) using dynamic mechanical analysis.
The HVGICs evaluated were Zirconomer [ZR] (Shofu), Equia Forte [EQ] (GC) and Riva [RV] (SDI). Sixty specimens (12mm x 2mm x 2mm) of each material were fabricated using customized Teflon molds. After initial set, the specimens were removed from their molds, finished, measured and randomly divided into 3 groups of 20. Half the specimens in each group were left uncoated while the remaining half was covered with the respective manufacturers' resin coating. The specimens were subsequently conditioned in distilled water, artificial saliva or citric acid at 37°C for 7 days. The uncoated and coated specimens (n=10) were then subjected to dynamic mechanical testing in flexure mode at 37°C with a frequency of 0.1 to 10Hz. Storage modulus, loss modulus and loss tangent data were subjected to normality testing and statistical analysis using one-way ANOVA/Scheffe's post-hoc test and Ttest at significance level p<0.05.
Mean storage modulus ranged from 1.39 ± 0.36 to 10.80 ± 0.86 GPa while mean loss modulus varied from 0.13 ± 0.03 to 0.70 ± 0.14 GPa after conditioning in the different mediums. Values for loss tangent ranged from 39.4 ± 7.75 to 213.2 ± 20.11 (x10 -3 ). Significant differences in visco-elastic properties were observed between mediums and materials. When conditioned in distilled water and artificial saliva,storage modulus was significantly improved when ZR, EQ and RV were uncoated. Significantly higher values were, however, observed with resin coating when the materials were exposed to citric acid.
The visco-elastic properties of HVGICs were influenced by both resin coating and chemical environment.
本研究通过动态力学分析,确定自粘性树脂涂层对高粘性玻璃离子水门汀(HVGIC)粘弹性的影响。
评估的 HVGIC 材料为 Zirconomer [ZR](Shofu)、Equia Forte [EQ](GC)和 Riva [RV](SDI)。每种材料各制作 60 个试件(12mm x 2mm x 2mm),使用定制的特氟龙模具。初始凝固后,将试件从模具中取出,完成、测量并随机分为 3 组,每组 20 个。每组的一半试件不涂覆,另一半试件用各自制造商的树脂涂层覆盖。然后将试件在 37°C 的蒸馏水中、人工唾液或柠檬酸中进行 7 天的调湿。然后,将未涂覆和涂覆的试件(n=10)在 37°C 下以 0.1 至 10Hz 的频率进行弯曲模式下的动态力学测试。存储模量、损耗模量和损耗角正切数据经过正态性检验后,采用单因素方差分析/谢弗事后检验和 T 检验进行统计学分析,显著性水平 p<0.05。
在不同介质中调湿后,平均存储模量范围为 1.39 ± 0.36 至 10.80 ± 0.86 GPa,平均损耗模量范围为 0.13 ± 0.03 至 0.70 ± 0.14 GPa。损耗角正切值范围为 39.4 ± 7.75 至 213.2 ± 20.11(x10 -3 )。介质和材料之间观察到粘弹性性质有显著差异。当在蒸馏水中和人工唾液中调湿时,ZR、EQ 和 RV 未涂覆时,存储模量显著提高。然而,当材料暴露于柠檬酸时,涂覆树脂后观察到显著更高的值。
HVGIC 的粘弹性性质受树脂涂层和化学环境的共同影响。