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牙膏研磨性和再矿化时间对体外侵蚀性牙齿磨损的影响。

Impact of dentifrice abrasivity and remineralization time on erosive tooth wear in vitro.

作者信息

Buedel Sarah, Lippert Frank, Zero Domenick T, Eckert George J, Hara Anderson T

机构信息

Department of Cariology, Operative Dentistry and Dental Public Health, Indiana University School of Dentistry, Indianapolis, IN, USA.

Department of Biostatistics, Indiana University School of Medicine, Indianapolis, IN, USA.

出版信息

Am J Dent. 2018 Feb;31(1):29-33.

Abstract

PURPOSE

To investigate the in vitro effects of simulated dentifrice slurry abrasivity (L-low, M-medium and H-high) and remineralization time (0, 30, 60 and 120 minutes) on erosive tooth wear.

METHODS

Enamel and root dentin specimens were prepared from bovine incisors (n= 8) and submitted to a cycling protocol including erosion, remineralization at the test times, and brushing with each of the tested slurries, for 5 days. Dental surface loss (SL) was determined by optical profilometry. Data was analyzed using mixed-model ANOVA and Fisher's PLSD tests (alpha= 0.05).

RESULTS

SL generally increased along with the increase in slurry abrasive level, with significance dependent upon the specific substrate and remineralization times. H showed the highest SL on both enamel and dentin; remineralization for 30 minutes reduced SL significantly (P< 0.05), but only for enamel. M showed intermediate SL values, with remineralization benefit clearly seen only after 120 minutes of remineralization (P< 0.05). L caused the least SL for both enamel and dentin, which was further reduced after remineralization for 120 and 30 minutes, respectively (both P< 0.05). Overall, root dentin had significantly higher SL than enamel. Less abrasive dentifrice slurries were able to reduce toothbrushing abrasion on both enamel and root dentin. This protection was enhanced by remineralization for all abrasive levels on enamel, but only for L on root dentin.

CLINICAL SIGNIFICANCE

High-risk erosion patients should avoid highly abrasive toothpastes, as remineralization can only partially compensate for their deleterious effects on eroded dental surfaces. Lower abrasive toothpastes are recommended.

摘要

目的

研究模拟牙膏浆体磨损性(低、中、高)和再矿化时间(0、30、60和120分钟)对侵蚀性牙齿磨损的体外影响。

方法

从牛切牙制备釉质和根面牙本质标本(n = 8),并进行一个循环方案,包括侵蚀、在测试时间进行再矿化,以及用每种测试浆体刷牙,持续5天。通过光学轮廓仪测定牙齿表面损失(SL)。使用混合模型方差分析和Fisher's PLSD检验(α = 0.05)分析数据。

结果

SL通常随着浆体磨料水平的增加而增加,其显著性取决于特定的底物和再矿化时间。高磨损性浆体在釉质和牙本质上均显示出最高的SL;30分钟的再矿化显著降低了SL(P < 0.05),但仅针对釉质。中等磨损性浆体显示出中等的SL值,仅在再矿化120分钟后才明显看到再矿化益处(P < 0.05)。低磨损性浆体在釉质和牙本质上导致的SL最少,分别在再矿化120分钟和30分钟后进一步降低(均P < 0.05)。总体而言,根面牙本质的SL显著高于釉质。磨损性较低的牙膏浆体能够减少釉质和根面牙本质上的刷牙磨损。对于釉质上的所有磨料水平,再矿化增强了这种保护作用,但仅对根面牙本质上的低磨损性浆体有此作用。

临床意义

高风险侵蚀患者应避免使用高磨损性牙膏,因为再矿化只能部分补偿其对侵蚀牙齿表面的有害影响。建议使用低磨损性牙膏。

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