The effect of zinc oxide-eugenol on the shear bond strength of a commonly used bonding system.

J. Leirskar, H. Nordbø
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引用次数: 45

Abstract

It has been claimed that eugenol has a detrimental effect on resin composites and dentin bonding systems. The aim of the present study was to examine whether zinc oxide-eugenol (ZOE) cement would reduce the efficacy of a bonding system. Human third molars were selected for the study, and cylindrical posts of a resin composite (Z100) were bonded vertically to a standardized flat dentinal surface, prepared on the buccal surface of the teeth and treated with Scotchbond Multi-Purpose. The tooth surfaces involved were either freshly cut, or had been exposed to ZOE cement for 6 days, with and without a subsequent thorough cleansing with ethanol. The bond strength in shear was measured after 24 hours. The results showed that ZOE cement had no negative effect on the bond strength of the resin composite (Z100) to dentin when this bonding system was used. The mean shear bond value for the specimens covered with ZOE cement for 6 days was 28.1 MPa. For specimens covered with ZOE cement and cleansed with 96% ethanol, the mean shear bond value was 23.5 MPa. The corresponding value for the controls was 19.0 MPa. These findings suggested that eugenol-containing temporary filling materials may be used safely prior to inserting resin based restorative materials, when Scotchbond Multi-Purpose is employed as the bonding agent.
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氧化锌-丁香酚对常用粘接体系剪切强度的影响。
据称丁香酚对树脂复合材料和牙本质结合系统有不利影响。本研究的目的是研究氧化锌-丁香酚(ZOE)水泥是否会降低粘合系统的效率。选择人类第三磨牙,将树脂复合材料(Z100)的圆柱形桩垂直粘接在标准化的平面牙基面上,在牙齿的颊面制备,并使用Scotchbond Multi-Purpose进行处理。所涉及的牙齿表面要么是新切割的,要么是暴露在ZOE水泥中6天,随后用乙醇彻底清洁或不使用乙醇彻底清洁。24h后测定剪切时的粘结强度。结果表明,使用ZOE胶结体系时,对树脂复合材料(Z100)与牙本质的结合强度没有负面影响。ZOE水泥覆盖6 d后试件的平均剪切黏结值为28.1 MPa。用ZOE水泥覆盖、96%乙醇清洗的试件,平均剪切黏结值为23.5 MPa。控制组的对应值为19.0 MPa。上述结果提示,在使用Scotchbond Multi-Purpose作为粘结剂的情况下,在使用树脂基修复材料之前,可以安全使用含丁香酚的临时填充材料。
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Pulp capping with adhesive resin-based composite vs. calcium hydroxide: a review. The influence of sample dimensions on hydroxyl ion release from calcium hydroxide products. Dentine chips produced by nickel-titanium rotary instruments. The effect of zinc oxide-eugenol on the shear bond strength of a commonly used bonding system. Comparison of profiles of key periodontal pathogens in periodontium and endodontium.
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