在过氧化卡酰胺中添加生物材料对珐琅质漂白效果和微硬度影响的体外评估

Sowmya Kavoor, M. Ranjini, Naval Abdul Aziz, H. K. Ashok, Roopa R. Nadig
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引用次数: 0

摘要

牙齿漂白虽然被认为是安全和保守的,但会引起牙齿结构的微观变化。本研究旨在评估过氧化卡巴酰胺(CP)漂白凝胶在加入生物活性玻璃(BG)和羟基磷灰石(HA)后的漂白效果及其对珐琅质微硬度的影响。 对 45 颗上颌门牙进行装饰、人工染色和丙烯酸镶嵌。样品被分为三组,每组 15 个,在 37°C 下每天漂白 8 小时,持续 2 周:第 1 组--16%氯化石蜡,第 2 组--用 BG 修饰的氯化石蜡,第 3 组--用羟基磷灰石(HA)修饰的氯化石蜡。漂白前后使用 CIE L*a*b* 系统进行分光光度颜色评估,并评估维氏硬度。数据分析采用学生配对 t 检验和单因素方差分析,然后进行 Tukey 事后分析。 与基线值相比,三组的色泽(L*a*b*)都有明显变化。但是,三组之间的总颜色变化(ΔE)没有明显差异。漂白后,CP 组的釉质微硬度明显降低,而 BG 和 HA 组的釉质微硬度则有所提高。BG 组和 HA 组的扫描电子显微镜图像显示有结晶沉积,表明有矿物质沉积。 考虑到在不妨碍漂白作用的情况下增加微硬度,添加生物材料可能是单独使用氯化石蜡漂白的一种有益替代方法。
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In vitro evaluation of the effect of addition of biomaterials to carbamide peroxide on the bleaching efficacy and microhardness of enamel
Teeth bleaching, although considered safe and conservative, cause microscopic changes in the tooth structure. The aim of this study is to evaluate the bleaching efficacy of carbamide peroxide (CP) bleaching gel when modified with the incorporation of bioactive glass (BG) and hydroxyapatite (HA) and its effect on enamel microhardness. Forty-five maxillary incisors were decoronated, artificially stained and mounted in acrylic. The samples were divided into three groups of 15 each and subjected to the following bleaching protocol for 8 h/day at 37°C for 2 weeks: Group 1 – 16% CP, Group 2 – CP modified with BG, and Group 3 – CP modified with hydroxyapatite (HA). Spectrophotometric color assessment using CIE L*a*b* system and Vickers microhardness were assessed before and after bleaching. Data were analyzed using Student’s paired t-test and one-way ANOVA followed by Tukey’s post hoc analysis. There was a significant change in color (L*a*b*) in all the three groups when compared to the baseline values. However, no significant difference in the total color change (ΔE) was observed between the three groups. Enamel microhardness reduced significantly in the CP group, whereas it increased in the BG and HA group after bleaching. Scanning electron microscopy images of BG and HA groups showed crystalline deposits suggesting mineral deposition. Addition of biomaterials can be a beneficial alternative to bleaching with CP alone, considering the increase in microhardness without hindering the bleaching action.
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