Carrillo-Marcos Ann, Salazar-Correa Giuliany, Castro-Ramirez Leonor, Ladera-Castañeda Marysela, López-Gurreonero Carlos, Cachay-Criado Hernán, Aliaga-Mariñas Ana, Cornejo-Pinto Alberto, Cervantes-Ganoza Luis, Cayo-Rojas César Félix
School of Stomatology, Universidad Privada San Juan Bautista, 15066 Lima, Peru.
"Grupo de Investigación Salud y Bienestar Global", Faculty of Dentistry and Postgraduate School, Universidad Nacional Federico Villarreal, 15001 Lima, Peru.
Polymers (Basel). 2022 Jul 28;14(15):3053. doi: 10.3390/polym14153053.
The aim of this study was to assess the microhardness and surface roughness of bulk-fill resin composites treated with and without the application of an oxygen-inhibited layer (OIL) and a polishing system. This in vitro experimental study consisted of 72 resin composite blocks divided into three groups: Tetric N-Ceram Bulk Fill, Opus Bulk Fill APS, and Filtek Bulk Fill. Each resin composite group was further divided into two subgroups: with and without OIL control. Subsequently, surface roughness and microhardness were measured before and after polishing. A t-test was used to compare independent and related measures. For the intergroup comparison of variation before and after polishing, the Kruskal−Wallis test with Bonferroni post hoc was used considering a significance level of p < 0.05. When comparing surface roughness, significant differences were observed between Opus Bulk Fill resin composite with and without OIL control (p = 0.003) before polishing. The same occurred when comparing Tetric N-Ceram resin composite with and without OIL control (p = 0.039) after polishing. In addition, the surface roughness of Filtek Bulk Fill, Opus Bulk Fill, and Tetric N-Ceram Bulk Fill resin composites, with and without OIL control, decreased significantly after polishing (p < 0.001), while surface microhardness significantly increased (p < 0.05), with the exception of Opus Bulk Fill resin with OIL control (p = 0.413). In conclusion, OIL control and polishing significantly improved the surface roughness and surface microhardness of Filtek Bulk Fill and Tetric N-Ceram Bulk Fill resin composites. However, in the case of Opus Bulk Fill resin composite, only its surface roughness was significantly improved.
本研究的目的是评估在应用和未应用氧抑制层(OIL)及抛光系统的情况下,大块充填树脂复合材料的显微硬度和表面粗糙度。这项体外实验研究包括72个树脂复合材料块,分为三组:Tetric N-Ceram大块充填、Opus大块充填APS和Filtek大块充填。每个树脂复合材料组又进一步分为两个亚组:有和没有OIL对照。随后,在抛光前后测量表面粗糙度和显微硬度。使用t检验比较独立和相关测量值。对于抛光前后变化的组间比较,考虑到显著性水平p < 0.05,使用带有Bonferroni事后检验的Kruskal-Wallis检验。在比较表面粗糙度时,在抛光前,有和没有OIL对照的Opus大块充填树脂复合材料之间观察到显著差异(p = 0.003)。在抛光后比较有和没有OIL对照的Tetric N-Ceram树脂复合材料时也出现了同样的情况(p = 0.039)。此外,有和没有OIL对照的Filtek大块充填、Opus大块充填和Tetric N-Ceram大块充填树脂复合材料的表面粗糙度在抛光后显著降低(p < 0.001),而表面显微硬度显著增加(p < 0.05),但有OIL对照的Opus大块充填树脂除外(p = 0.413)。总之,OIL对照和抛光显著改善了Filtek大块充填和Tetric N-Ceram大块充填树脂复合材料的表面粗糙度和表面显微硬度。然而,对于Opus大块充填树脂复合材料,只有其表面粗糙度得到了显著改善。