Morphological and Elemental Evaluation of Investigative Mouthwashes to Repair Acid-Eroded Tooth Surface.

IF 1.5 Q3 DENTISTRY, ORAL SURGERY & MEDICINE Clinical, Cosmetic and Investigational Dentistry Pub Date : 2023-01-01 DOI:10.2147/CCIDE.S390240
Bennett Tochukwu Amaechi, Sahar Mohseni, Andrew M Dillow, Mackenzie H Cvelich, Ana Stevanovic, Alphonsus Igoche Abah, Fatemeh Movaghari Pour, Rayane Farah, Yuko Kataoka, Maria Camila Restrepo, Dennis Zhang, Leonora Ethleen Leigh, Joel Basilan
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引用次数: 1

Abstract

Purpose: Erosive tooth wear (ETW) is characterized by subsurface demineralization and tooth substance loss with crater formation. Remineralization of subsurface demineralization has previously been demonstrated; however, repair of the eroded surface is still under investigation. This study investigated the effectiveness of mouthwashes containing hydrolyzed wheat protein (HWP) in repairing ETW through promotion of organized crystal growth.

Methods: Enamel Erosion was created on 210 enamel blocks by 10-minute demineralization in 1% Citric Acid (pH 3.5). Then, blocks were randomly assigned to seven groups (30/group); (A) 0.2% HWP, B) 1% HWP, (C) 2% HWP, (D) 1% HWP + 0.05% NaF, (E) Listerine™ mouthwash, (F) 0.02% NaF Crest™ Pro-health mouthwash and (G) artificial saliva (AS) only. Groups were subjected to daily pH-cycling consisting of one 5-minute erosive challenge with citric acid, three 1-minute mouthwash treatment periods, and then storage in AS for the rest of the time for 28 days. Treatment effects were assessed using SEM-EDX. Statistical analysis was by ANOVA and Tukey's multiple comparison.

Results: In groups exposed to HWP-containing mouthwashes, there was growth of fiber-like crystals that increased in packing density in a dose-dependent manner (0.2%, 1%, 2%) on the eroded enamel surfaces, with increased calcium and phosphate contents on the treated surfaces. The non-HWP-containing groups had the eroded surfaces covered by structureless deposit layer firmly attached to the surface.

Conclusion: Treating eroded enamel surface with HWP-containing mouthwash resulted in repair of the damaged tissue by formation of a protective layer of crystal deposits within and on the eroded enamel tissue.

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研究漱口水修复酸蚀牙表面的形态学和元素评价。
目的:牙蚀性磨损(ETW)的特征是牙表面下脱矿和牙内物质流失,形成牙坑。地下脱矿的再矿化作用已被证实;然而,修复被侵蚀的表面仍在研究中。本研究考察了含水解小麦蛋白(HWP)漱口水通过促进有组织晶体生长来修复ETW的效果。方法:在1%柠檬酸(pH 3.5)溶液中脱矿10分钟,对210块牙釉质进行牙釉质侵蚀。然后,将block随机分为7组(30个/组);(A) 0.2% HWP, B) 1% HWP, (C) 2% HWP, (D) 1% HWP + 0.05% NaF, (E) Listerine™漱口水,(F) 0.02% NaF Crest™Pro-health漱口水和(G)仅含人工唾液(AS)。各组进行每日ph循环,包括一次5分钟的柠檬酸侵蚀,三次1分钟的漱口水处理,然后在AS中保存28天。采用扫描电镜edx评估治疗效果。统计分析采用方差分析和Tukey多重比较。结果:在暴露于含hwp漱口水的组中,在侵蚀的牙釉质表面生长纤维状晶体,其堆积密度以剂量依赖的方式增加(0.2%,1%,2%),处理表面的钙和磷酸盐含量增加。不含hwp组的侵蚀面被无结构沉积层牢固地附着在表面。结论:用含hwp漱口水处理牙釉质侵蚀面,可在牙釉质内部和表面形成晶体保护层,修复受损组织。
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来源期刊
CiteScore
3.90
自引率
5.60%
发文量
43
审稿时长
16 weeks
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