The Effects of Home and Over-The-Counter Whitening Agents on Surface Roughness and Microhardness of High Aesthetic Composites

Q3 Dentistry Cumhuriyet Dental Journal Pub Date : 2024-01-31 DOI:10.7126/cumudj.1414323
Elif İpek KILIÇ DÖNMEZ, İ. Hubbezoğlu
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Abstract

Objectives: The aim of this in-vitro study is to compare the effect of the newly released peroxide-free over-the-counter whitening products and the home bleaching material containing carbamide peroxide, on high aesthetic composites. Materials and methods: In our study, 4 different composites were used: supra-nano(Tokuyama Estelite Asteria), submicron hybrid(Brilliant Ever Glow), nanofil(Filtek Universal Restorative) and finally nano-ceramic(Ceram.x SphereTEC one). A total of 200 disc-shaped composite specimens with 2 mm thickness and 8 mm diameter were prepared using metal molds(n=10). One surface of the samples was polished using Sof-Lex™ XT discs. Composite groups were divided into 5 subgroups as 4 experimental and 1 control groups. Four bleaching products, namely Opalascence Home Type, Mr. Blanc, I-White, Cali White, were used in the experimental groups. It was kept in a drying oven at 37°C to imitate the temperature of the mouth on certain days and hours in accordance with the instructions written in the whitening products prospectus. The surface roughness of the samples was measured with a profilometer and the microhardness values were measured with a fully automatic Micro Hardness Tester. The surfaces were examined with a Scanning Electron Microscopy. Data were evaluated with two-way Variance Analysis and Tukey Test as statistical methods. Results: According to the surface roughness data, Filtek Universal Restorative's I-White subgroup showed the highest average surface roughness value, and Tokuyama Estelite Asteria's I-White subgroup showed the lowest value. There was a meaningful difference between the composite main groups and the experimental subgroups(p
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家用和非处方美白剂对高美观度复合材料表面粗糙度和微硬度的影响
研究目的本体外研究旨在比较新推出的不含过氧化物的非处方美白产品和含有过氧化碳酰胺的家用漂白材料对高美感复合材料的影响。材料和方法:我们的研究使用了 4 种不同的复合材料:超纳米(Tokuyama Estelite Asteria)、亚微米混合(Brilliant Ever Glow)、纳米纤丝(Filtek Universal Restorative)和纳米陶瓷(Ceram.x SphereTEC one)。使用金属模具(n=10)共制备了 200 个厚度为 2 毫米、直径为 8 毫米的圆盘状复合材料试样。样品的一个表面使用 Sof-Lex™ XT 研磨盘抛光。复合材料组分为 5 个子组,即 4 个实验组和 1 个对照组。实验组使用了四种漂白产品,分别是 Opalascence Home Type、Mr.Blanc、I-White 和 Cali White。按照美白产品说明书上的说明,将样品放在 37°C 的干燥箱中,以模仿口腔在特定日期和时间的温度。样品的表面粗糙度用轮廓仪测量,显微硬度值用全自动显微硬度计测量。样品表面用扫描电子显微镜进行了检测。数据评估采用双向方差分析和 Tukey 检验作为统计方法。结果根据表面粗糙度数据,Filtek Universal Restorative 的 I-White 子组的平均表面粗糙度值最高,Tokuyama Estelite Asteria 的 I-White 子组的平均表面粗糙度值最低。复合材料主组与实验分组之间的差异有意义(p
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来源期刊
Cumhuriyet Dental Journal
Cumhuriyet Dental Journal Dentistry-Dentistry (all)
CiteScore
0.40
自引率
0.00%
发文量
0
审稿时长
8 weeks
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