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Influence of salivary enzymes and alkaline pH environment on fatigue behavior of resin composites.

机译:唾液酶和碱性pH环境对树脂复合材料疲劳行为的影响。

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PURPOSE: To evaluate the effect of enzymatic activity and alkaline medium on flexural strength and rotary fatigue resistance of direct and indirect resin composite restorative materials. METHODS: Three direct resin composite materials Filtek Z100, Filtek Z250 and Filtek Silorane (3M ESPE), and two indirect resin composite materials; Sinfony (3M ESPE) and an experimental composite (Heraeus Kulzer) were used to fabricate bar-shaped specimens (2 x 2 x 25 mm; n=10) to determine the flexural strength (Fs) by means of a 3-point bending test according to ISO 4049. Additional specimens of the same dimensions (n=20) were used to prepare hour-glass shaped specimens which were immersed in distilled water for 48 hours, transferred to one of five aqueous media at 37 degrees C for 2 weeks; phosphate buffer, distilled water, 0.1N NaOH, 1 unit/ml Amylase, 0.1 unit/ml Esterase, and a group in 0.1N NaOH at 60 degrees C. Rotary fatigue resistance (RFR) was determined in a rotating-bending cantilever test with the highest stress located at the constriction of the hour glass. The rotary fatigue resistance tests were conducted according to the staircase approach (10(4) cycles, 1.0 Hz) and the mean RFR was calculated using logistic regression analysis. RESULTS: NaOH produced a significant decrease in Fs of all materials. The effect of enzymatic biodegradation on Fs of Filtek Z100 and Filtek Z250 was found to be significant, however, for Silorane and indirect composites it was not significant. Except for NaOH the influence of the different aqueous solutions on RFR was not significant for all tested materials.
机译:目的:评估酶活性和碱性介质对直接和间接树脂复合修复材料的弯曲强度和抗旋转疲劳性的影响。方法:三种直接树脂复合材料Filtek Z100,Filtek Z250和Filtek Silorane(3M ESPE),以及两种间接树脂复合材料。使用Sinfony(3M ESPE)和实验性复合材料(Heraeus Kulzer)制作条形样品(2 x 2 x 25 mm; n = 10),以通过三点弯曲试验确定弯曲强度(Fs)根据ISO4049。使用相同尺寸(n = 20)的其他试样制备沙漏形试样,将其浸入蒸馏水中48小时,然后在37°C下转移至五种水性介质之一中放置2周;磷酸盐缓冲液,蒸馏水,0.1N NaOH,1单位/毫升淀粉酶,0.1单位/毫升酯酶和0.1N NaOH中的一个基团,温度为60摄氏度。在旋转弯曲悬臂测试中,通过最高压力位于沙漏的收缩处。根据阶梯法(10(4)个周期,1.0 Hz)进行了旋转疲劳强度测试,并使用逻辑回归分析计算了平均RFR。结果:NaOH使所有材料的Fs显着降低。酶促生物降解对Filtek Z100和Filtek Z250的Fs的影响被发现是显着的,但是对于Silorane和间接复合材料则不显着。除了氢氧化钠以外,对于所有测试材料,不同水溶液对RFR的影响均不显着。

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