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食物染料和紫外线导致的正畸粘合剂变色。

Discolouration of orthodontic adhesives caused by food dyes and ultraviolet light.

作者信息

Faltermeier Andreas, Rosentritt Martin, Reicheneder Claudia, Behr Michael

机构信息

Department of Orthodontics, University Medical Centre, Regensburg, Germany.

出版信息

Eur J Orthod. 2008 Feb;30(1):89-93. doi: 10.1093/ejo/cjm058. Epub 2007 Sep 14.

Abstract

Enamel discolouration after debonding of orthodontic attachments could occur because of irreversible penetration of resin tags into the enamel structure. Adhesives could discolour because of food dyes or ultraviolet irradiation. The aim of this study was to investigate the colour stability of adhesives during ultraviolet irradiation and exposure to food colourants. Four different adhesives were exposed in a Suntest CPS+ ageing device to a xenon lamp to simulate natural daylight (Transbond XT, Enlight, RelyX Unicem, and Meron Plus AC). Tomato ketchup, Coca Cola, and tea were chosen as the food colourants. After 72 hours of exposure, colour measurements were performed by means of a spectrophotometer according to the Commission Internationale de l'Eclairage Lab* system and colour changes (DeltaE*) were computed. Statistical differences were investigated using two-way analysis of variance (ANOVA) and Friedman test. Unsatisfactory colour stability after in vitro exposure to food colourants and ultraviolet light was observed for the conventional adhesive systems, Transbond XT and Enlight. RelyX Unicem showed the least colour change and the resin-reinforced glass-ionomer cement (GIC), Meron Plus AC, the greatest colour change. The investigated adhesives seem to be susceptible to both internal and external discolouration. These in vitro findings indicate that the tested conventional adhesive systems reveal unsatisfactory colour stability which should be improved to avoid enamel discolouration.

摘要

正畸附件去除后牙釉质变色可能是由于树脂突不可逆地侵入牙釉质结构。粘合剂可能因食用色素或紫外线照射而变色。本研究的目的是调查粘合剂在紫外线照射和接触食用色素期间的颜色稳定性。四种不同的粘合剂(Transbond XT、Enlight、RelyX Unicem和Meron Plus AC)在Suntest CPS+老化装置中暴露于氙灯下以模拟自然日光。选择番茄酱、可口可乐和茶作为食用色素。暴露72小时后,根据国际照明委员会Lab系统用分光光度计进行颜色测量,并计算颜色变化(ΔE)。使用双向方差分析(ANOVA)和Friedman检验研究统计学差异。对于传统粘合剂系统Transbond XT和Enlight,体外暴露于食用色素和紫外线后观察到颜色稳定性不佳。RelyX Unicem的颜色变化最小,而树脂增强玻璃离子水门汀(GIC)Meron Plus AC的颜色变化最大。所研究的粘合剂似乎易受内部和外部变色的影响。这些体外研究结果表明,测试的传统粘合剂系统显示出不理想的颜色稳定性,应加以改善以避免牙釉质变色。

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