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The role of etching in bonding to enamel: A comparison of self-etching and etch-and-rinse adhesive systems

机译:蚀刻在搪瓷粘结中的作用:自蚀刻与蚀刻和冲洗粘合剂体系的比较

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摘要

Objective. Etch and resin infiltration morphologies were compared for three self-etch adhesive (SEA) systems and eleven model etch-and-rinse (ERA) systems using various phosphoric acid (PA) concentrations with Adper Single Bond Plus (SB) adhesive. Matches for the morphologies were made between each SEA system and one of the PA/SB systems and bond strength measurements were made for all the systems. The hypothesis was that similar morphology would result in similar bond strength assuming micro-mechanical bonding is the mechanism of adhesion.rnMethods. Three specimens were prepared on polished (4000 grit) human enamel for each adhesive system to examine etch and resin infiltration morphology by SEM. For the latter, the adhesive systems were bonded using recommended methods and the enamel was dissolved in acid to reveal the resin. The etch patterns for the SEA systems were determined by rinsing off the material with water and acetone. Polished (4000 grit) human enamel was used with each adhesive system to determine 24-h resin composite to enamel shear bond strengths (SBS). A minimum of 10 specimens were used for each group. Data were analyzed by a one factor ANOVA and Fisher's PLSD post hoc test.rnResults. The SBS to polished enamel for two of the three SEA systems were statistically significantly greater (p <0.05) than the PA/SB matched systems, indicating that chemical bonding might be partly responsible for the measured bond strength. All three SEA systems provided statistically lower (p < 0.05) SBS values than the PA/SB systems with PA concentrations between 2.5% and 40%.rnSignificance. Although chemical bonding may be present for some SEA systems it does not provide enough increase in bond strength to compete with the bond produced by ERA systems using phosphoric acid etching of enamel.
机译:目的。使用三种磷酸(PA)浓度和Adper Single Bond Plus(SB)粘合剂对三种自蚀刻粘合剂(SEA)系统和十一种模型蚀刻和冲洗(ERA)系统的蚀刻和树脂渗透形态进行了比较。在每个SEA系统和一个PA / SB系统之间进行了形态匹配,并对所有系统进行了粘结强度测量。假设是假设微机械键合是粘合的机理,则相似的形态会导致相似的键合强度。对于每个胶粘剂系统,在抛光的(4000粗粒度)人牙釉质上制备了三个样品,以通过SEM检查蚀刻和树脂渗透形态。对于后者,使用推荐的方法将粘合剂体系粘合在一起,然后将瓷釉溶解在酸中以露出树脂。通过用水和丙酮冲洗掉材料来确定SEA系统的蚀刻图案。抛光(4000粒度)的人类牙釉质与每种粘合剂体系一起使用,以确定24小时树脂复合材料对牙釉质的剪切粘合强度(SBS)。每组至少使用10个样本。通过单因素方差分析和Fisher的PLSD事后检验分析数据。从统计上讲,三个SEA系统中的两个的SBS抛光瓷釉比PA / SB匹配系统显着更大(p <0.05),这表明化学键合可能是所测量的键合强度的部分原因。在PA浓度介于2.5%和40%之间的情况下,所有三个SEA系统提供的SBS值均在统计学上低于(p <0.05)SBS值。尽管对于某些SEA系统可能存在化学键合,但它并未提供足够的键合强度增强以与使用搪瓷的磷酸蚀刻的ERA系统产生的键合竞争。

著录项

  • 来源
    《Dental materials》 |2009年第11期|1459-1467|共9页
  • 作者单位

    Department of General Dentistry, Creighton University School of Dentistry, 2500 California Plaza, Omaha, NE 68178, USA;

    Department of General Dentistry, Creighton University School of Dentistry, 2500 California Plaza, Omaha, NE 68178, USA;

    Department of General Dentistry, Creighton University School of Dentistry, 2500 California Plaza, Omaha, NE 68178, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    dental materials; enamel; adhesion;

    机译:牙科材料;搪瓷;附着力;

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