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Spectrophotometric Evaluation of the Pulpal Peroxide Levels in Intact and Restored Teeth - An Invitro Study

机译:分光光度法评估完整和恢复的牙齿中过氧化物的水平-体外研究

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Introduction: Hydrogen peroxide (30%) is a commonly used "in office" bleaching agent. Deleterious effects of hydrogen peroxide on the pulp have been observed. Aim: The present study was conducted with the aim to evaluate the penetration of 30% hydrogen peroxide into the pulp chamber through intact teeth and through the surface of teeth, restored with either hybrid composite or Resin Modified Glass Ionomer Cement (RMGIC). Materials and Methods: Sixty extracted human maxillary central incisors were selected and divided into six groups. Two groups were restored with hybrid composite resin and two with RMGIC, while two groups were left intact. The teeth with acetate buffer solution in their pulp cavity were then immersed in either 30% hydrogen peroxide or distilled water depending upon the group, for 60 minutes at 37°C. Then horseradish peroxidase and leucocrystal violet were added to the acetate buffer solution present in the pulp chamber after it was transferred to a test tube and the optical density of the resultant blue solution obtained was measured spectrophotometrically. Statistical Analysis: The data obtained were analyzed using one way ANOVA and Student?s t-test. Results: The data obtained established that hydrogen peroxide penetrated into the pulp from the bleaching agent used. Hydrogen peroxide (30%) showed the highest pulpal peroxide level in teeth restored with RMGIC followed by teeth restored with hybrid composite resin and the least amount of penetration was observed in intact teeth. Conclusion: The amount of peroxide penetration into the tooth is more through restored tooth than intact tooth and is also dependant on the type of restorative materials used.
机译:简介:过氧化氢(30%)是常用的“办公室”漂白剂。已经观察到过氧化氢对纸浆的有害作用。目的:进行本研究的目的是评估通过混合复合材料或树脂改性玻璃离子聚合物(RMGIC)修复的牙齿中完整牙齿和牙齿表面的30%过氧化氢渗透到牙髓腔中的情况。材料与方法:选择提取的上颌中切牙60颗,分为6组。两组用混合复合树脂修复,两组用RMGIC修复,而两组保持完整。然后将其牙髓腔中装有醋酸盐缓冲溶液的牙齿在37°C下浸入30%过氧化氢或蒸馏水(视组别而定)60分钟。然后将辣根过氧化物酶和无色结晶紫转移到纸浆室中存在的乙酸盐缓冲溶液中,然后将其转移到试管中,并用分光光度法测量所得蓝色溶液的光密度。统计分析:使用单因素方差分析和Student t检验对获得的数据进行分析。结果:获得的数据证实过氧化氢从所用的漂白剂渗透到纸浆中。过氧化氢(30%)在用RMGIC修复的牙齿中显示最高的牙髓过氧化物水平,其次是用混合复合树脂修复的牙齿,并且在完整的牙齿中观察到的渗透量最少。结论:过氧化氢通过修复后的牙齿比完整的牙齿渗透到牙齿的数量更多,并且还取决于所用修复材料的类型。

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