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Effect of topical fluoride application on toothbrushing abrasion of resin composites

机译:局部施用氟化物对树脂复合材料牙刷磨损的影响

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Objectives: This in vitro study assesses toothbrushing abrasion of a microfill (Heliomolar~® Radioopaque) and a hybrid composite (Herculite~® XRV) after application of two acidic fluoride agents. Methods: Thirty-six specimens of each resin composite were fabricated, ground flat and polished. Subsequently the 36 samples of each material were evenly assigned to three groups. In the first group, samples were treated with the fluoride varnish Bifluorid 12~® (5.5% F, pH 5.6), in the second group with Elmex Fluid~® (1.25% F, pH 4.3). In the third group, specimens remained unfluoridated (controls). After 8 h, the samples were subjected to toothbrushing abrasion (2000 brushing strokes, load: 250 g) in an abrasive slurry. Fluoridation and brushing abrasion were repeated twice. Afterwards, abrasion of the materials was quantitatively determined with a laser profilometer and statistically analyzed (ANOVA). Results and Significance: With Herculite~® both, Bifluorid 12~® (P=0.0001) and Elmex Fluid~® (P=0.0001) led to a significant increase of brushing abrasion compared to the non-fluoridated group. However, no significant difference was observed between the two fluoridation regimes. Heliomolar~® showed a tendency towards higher abrasion after treatment with Elmex Fluid~® compared to Bifluorid 12~® (P=0.0496) and the non-fluoridated group (P=0.0496), whereas treatment with Bifluorid 12~® yielded no significant difference compared to the non-fluoridated Heliomolar~® specimens. Fluoridation of Herculite~® resulted in a 106-121% increase of abrasion, whereas Heliomolar~® only showed an increase by 5-30%. Application of the acidic fluoride products used led to an increase in toothbrushing abrasion of the tested composite restorative materials. However, clinical long-term studies are needed to determine the effect of topical fluoride regimes on resin composite materials.
机译:目的:这项体外研究评估了在使用两种酸性氟化剂后,微填充物(Heliomolar〜®Radioopaque)和混合复合材料(Herculite®®XRV)的牙刷磨损情况。方法:制作每种树脂复合材料的36个样品,将其磨平并抛光。随后,每种材料的36个样品被均匀地分为三组。在第一组中,样品用氟化物清漆Bifluorid12®(5.5%F,pH 5.6)处理,在第二组中,样品用ElmexFluid®®(1.25%F,pH 4.3)处理。在第三组中,标本保持未氟化状态(对照)。 8小时后,将样品在磨料浆中进行牙刷磨擦(2000刷冲程,负荷:250 g)。重复两次氟化和刷磨。然后,用激光轮廓仪定量测定材料的磨损并进行统计分析(ANOVA)。结果和意义:与非氟化组相比,Herculite®,Bifluorid12®(P = 0.0001)和ElmexFluid®(P = 0.0001)导致刷牙磨损显着增加。然而,在两种氟化方案之间未观察到显着差异。与Bifluorid 12〜®(P = 0.0496)和非氟化组(P = 0.0496)相比,用ElmexFluid®®处理后Heliomolar〜®表现出更高的磨损趋势,而Bifluorid 12〜®处理则无明显差异。与未氟化的Heliomolar®标本相比。 Herculite®的氟化导致磨损增加106-121%,而Heliomolar®仅显示增加5-30%。所使用的酸性氟化物产品的使用导致所测试的复合修复材料的牙刷磨损增加。但是,需要临床长期研究来确定局部氟化物方案对树脂复合材料的影响。

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