Yu Peng, Yang Su-Ming, Xu Yong-Xiang, Wang Xiao-Yan
Department of Cariology and Endodontology, Peking University School and Hospital of Stomatology, Beijing, China.
National Clinical Research Center for Oral Diseases & National Engineering Research Center of Oral Biomaterials and Digital Medical Devices & Beijing Key Laboratory of Digital Stomatology, Beijing, China.
J Dent Sci. 2023 Jul;18(3):1016-1022. doi: 10.1016/j.jds.2022.12.004. Epub 2022 Dec 15.
BACKGROUND/PURPOSE: Few studies have focused on the influence of simulated toothbrush abrasion on the surface qualities of novel nanofilled and nanohybrid composites. The aim of the study was to evaluate the surface roughness and gloss values of resin-based composite (RBC) materials with various filler types before and after simulated toothbrush abrasion.
One nanofilled (Filtek Z350 XT [FT3]), two nanohybrids (Harmonize [HM] and Clearfil Majesty [CM]) and one microhybrid (Filtek Z250 [FT2]) were evaluated. Twelve specimens of each material were made and polished with silicon carbide sandpapers. Initial surface roughness and gloss values were measured as negative controls. Then, all specimens were subjected to simulated toothbrush abrasion on a custom-made apparatus. After 2000, 4000 and 8000 cycles, the surface roughness and gloss values of all specimens were tested. One additional specimen from each group was selected for scanning electron microscope (SEM) analysis.
For FT3, Ra and GU values did not significantly change until after 8000 cycles during the process of toothbrushing ( > 0.05). For HM, CM and FT2, the Ra and GU values significantly decreased after 4000 and 8000 cycles of toothbrush abrasion ( < 0.05). After 8000 cycles of toothbrush abrasion, FT3 presented the lowest surface roughness and highest gloss values of all materials ( < 0.05). SEM images showed that surface textures and irregularities corresponded to the results of surface roughness and gloss.
Surface roughness and gloss after simulated toothbrush abrasion were material dependent. Nanofilled resin composite presented the lowest Ra values and highest GU values.
背景/目的:很少有研究关注模拟牙刷磨损对新型纳米填充和纳米混合复合材料表面质量的影响。本研究的目的是评估不同填料类型的树脂基复合材料(RBC)在模拟牙刷磨损前后的表面粗糙度和光泽度值。
评估了一种纳米填充材料(Filtek Z350 XT [FT3])、两种纳米混合材料(Harmonize [HM] 和 Clearfil Majesty [CM])以及一种微混合材料(Filtek Z250 [FT2])。每种材料制作12个试件,并用碳化硅砂纸进行抛光。测量初始表面粗糙度和光泽度值作为阴性对照。然后,所有试件在定制设备上进行模拟牙刷磨损。在2000、4000和8000次循环后,测试所有试件的表面粗糙度和光泽度值。从每组中另外选取一个试件进行扫描电子显微镜(SEM)分析。
对于FT3,在刷牙过程中,直到8000次循环后,Ra和GU值才出现显著变化(P>0.05)。对于HM、CM和FT2,在牙刷磨损4000次和8000次循环后,Ra和GU值显著降低(P<0.05)。在牙刷磨损8000次循环后,FT3在所有材料中表现出最低的表面粗糙度和最高的光泽度值(P<0.05)。SEM图像显示,表面纹理和不规则性与表面粗糙度和光泽度的结果一致。
模拟牙刷磨损后的表面粗糙度和光泽度取决于材料。纳米填充树脂复合材料呈现出最低的Ra值和最高的GU值。