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抗坏血酸钠对两种漂白技术后牙本质粘结的影响。

Effect of sodium ascorbate on dentin bonding after two bleaching techniques.

作者信息

Briso A L F, Rahal V, Sundfeld R H, dos Santos P H, Alexandre R S

出版信息

Oper Dent. 2014 Mar-Apr;39(2):195-203. doi: 10.2341/12-054-L. Epub 2013 Jul 12.

Abstract

The purpose of this study was to analyze the influence of 10% sodium ascorbate (SA) on the hybrid layer, resin tag length, and bond strength to dentin after bleaching. Six groups were tested: G C, control; G SA, sodium ascorbate (SA) + restoration; G CP, bleaching with carbamide peroxide (CP) + restoration; G CP+SA, bleaching with CP + SA+ restoration; G HP, bleaching with 35% hydrogen peroxide (HP) + restoration; and G HP+SA, HP + SA + restoration. After dental bleaching, the dentin was exposed and the antioxidant solution was applied to groups G SA, G CP+SA, and G HP+SA, before bonding procedures. The teeth were sectioned in the mesiodistal direction. One section was decalcified, and the specimens were embedded in paraffin and sectioned in the longitudinal direction with a thickness of 6 μm. Fifteen slices of each specimen were selected according to a systematic sample of slices with an interval proportional to the total number of slices obtained for each tooth. The specimens were stained using the Brown & Brenn method, and an optic microscope was used to analyze the hybrid layer thickness and resin tag length. The remaining tooth segment was sectioned into stick-shaped specimens and used for microtensile bond strength testing (0.5 mm/min). Statistical analysis was performed using two-way analysis of variance and Fisher test. The results for hybrid layer + tag formation (in micrometers) were G C, 13.27 Aa; G SA, 11.85 Ba; G CP, 6.84 Bb; G CP+SA, 9.02 Ab; G HP, 7.28 Bb; and G HP+SA, 9.22 Ab; bond strength results (in MPa) were G C, 49.5 Aa; G SA, 51.7 Aa; G CP, 37.16 Bb; G CP+SA, 47.69 Aa; G HP, 32.39 Ab; and G HP+SA, 39.67 Ab. Tooth bleaching with CP or HP impairs the formation of the hybrid layer and resin tags and reduces the microtensile bond strength. Statistically, the use of SA significantly increases the hybrid layer thickness and resin tag length. The microtensile bond strength values for carbamide peroxide increased, but the microtensile bond strength for hydrogen peroxide was not affected.

摘要

本研究的目的是分析10%抗坏血酸钠(SA)对漂白后混合层、树脂突长度及与牙本质粘结强度的影响。测试分为六组:G C为对照组;G SA为抗坏血酸钠(SA)+修复;G CP为用过氧化脲(CP)漂白+修复;G CP+SA为用CP漂白+SA+修复;G HP为用35%过氧化氢(HP)漂白+修复;G HP+SA为HP+SA+修复。牙齿漂白后,暴露牙本质,在粘结操作前,将抗氧化剂溶液应用于G SA、G CP+SA和G HP+SA组。牙齿沿近远中方向切片。取一片进行脱钙处理,将标本嵌入石蜡,沿纵向切成6μm厚的切片。根据系统抽样方法,从每个标本中选取15片切片,切片间隔与每颗牙齿获得的切片总数成比例。标本采用Brown & Brenn法染色,用光学显微镜分析混合层厚度和树脂突长度。将剩余的牙齿部分切成棒状标本,用于微拉伸粘结强度测试(0.5mm/min)。采用双向方差分析和Fisher检验进行统计分析。混合层+树脂突形成(单位:微米)的结果为:G C组13.27 Aa;G SA组11.85 Ba;G CP组6.84 Bb;G CP+SA组9.02 Ab;G HP组7.28 Bb;G HP+SA组9.22 Ab;粘结强度结果(单位:MPa)为:G C组49.5 Aa;G SA组51.7 Aa;G CP组37.16 Bb;G CP+SA组47.69 Aa;G HP组32.39 Ab;G HP+SA组39.67 Ab。用CP或HP进行牙齿漂白会损害混合层和树脂突的形成,并降低微拉伸粘结强度。统计学上,使用SA可显著增加混合层厚度和树脂突长度。过氧化脲的微拉伸粘结强度值有所增加,但过氧化氢的微拉伸粘结强度未受影响。

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