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纳米羟磷灰石在正畸托槽和附件粘接前脱矿牙釉质中的仿生效应:体外试验中的视觉、黏附强度和硬度。

Biomimetic Effect of Nano-Hydroxyapatite in Demineralized Enamel before Orthodontic Bonding of Brackets and Attachments: Visual, Adhesion Strength, and Hardness in In Vitro Tests.

机构信息

Unit of Orthodontics and Pediatric Dentistry, Section of Dentistry, Department of Clinical, Surgical, Diagnostic and Pediatric Sciences, University of Pavia, Pavia, Italy.

Unit of Dental Hygiene, Section of Dentistry, Department of Clinical, Surgical, Diagnostic and Pediatric Sciences, University of Pavia, Pavia, Italy.

出版信息

Biomed Res Int. 2020 Jan 30;2020:6747498. doi: 10.1155/2020/6747498. eCollection 2020.

Abstract

Dietary habits with high consumption of acidic food can induce in orthodontic patients an increased risk of demineralization lesions around orthodontic brackets and bands. The purpose of the present laboratory study is to assess the visual efficacy of a biomimetic nano-hydroxyapatite remineralizing solution in a hypomineralized enamel surface and its effect on adhesion of fixed orthodontic appliances and on enamel microhardness. Intact teeth were demineralized, and subsequently the areas of demineralization were visually recorded using a 0-100 scale. Subsequently, a remineralizing solution (Biorepair® Repair Shock Treatment) was applied for ten minutes once a day/for one week per month for a total remineralizing treatment of 3 months. Visual effects were recorded. Moreover, bond strength was recorded and adhesive remnant index scores were measured for both orthodontic brackets and composite attachments both before demineralization and after demineralization and application of remineralizing solution. Also, Vickers microhardness was measured. All data were submitted to statistical analysis. The application of remineralizing solution induced a significant reduction of demineralized areas after the first week of application. No significant differences between untreated enamel surfaces and remineralized surfaces were detected after 2 months of remineralizing treatment. Bond strength values were significantly reduced for both brackets and attachments after remineralizing treatment. However, attachments showed higher adhesion values than brackets in both conditions tested. Remineralized enamel showed significantly higher microhardness values than demineralized enamel and lower values than intact enamel.

摘要

饮食习惯中大量食用酸性食物会使正畸患者的正畸托槽和带周围发生脱矿病变的风险增加。本实验室研究的目的是评估仿生纳米羟基磷灰石再矿化溶液在脱矿釉质表面的视觉效果及其对固定正畸器械的黏附力和釉质显微硬度的影响。完整的牙齿被脱矿化,然后使用 0-100 刻度对脱矿区域进行视觉记录。随后,每天应用一次(每月一次,为期一周)再矿化溶液(Biorepair® Repair Shock Treatment)十分钟,总共进行 3 个月的再矿化治疗。记录视觉效果。此外,记录正畸托槽和复合粘接剂的黏附强度,并测量脱矿化和应用再矿化溶液前后的黏附残留指数得分。还测量了维氏显微硬度。所有数据均进行了统计学分析。应用再矿化溶液后,在应用的第一周后,脱矿区域明显减少。经过 2 个月的再矿化治疗后,未处理的釉质表面和再矿化表面之间未发现明显差异。再矿化治疗后,托槽和附件的黏附强度值均显著降低。然而,在两种测试条件下,附件的黏附力值均高于托槽。再矿化釉质的显微硬度值明显高于脱矿釉质,低于完整釉质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d748/7013302/575881fd59e6/BMRI2020-6747498.001.jpg

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