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锶对根牙本质小管阻塞和纳米力学性能的影响。

Strontium effects on root dentin tubule occlusion and nanomechanical properties.

机构信息

Department of Preventive and Restorative Dental Sciences, University of California, San Francisco, 707 Parnassus Avenue, San Francisco, CA 94143-0758, USA.

Department of Preventive and Restorative Dental Sciences, University of California, San Francisco, 707 Parnassus Avenue, San Francisco, CA 94143-0758, USA.

出版信息

Dent Mater. 2016 Feb;32(2):240-51. doi: 10.1016/j.dental.2015.11.020. Epub 2016 Jan 5.

Abstract

OBJECTIVES

Dentin hypersensitivity often is treated by promotion of dentin tubule occlusion. In this in vitro study we evaluated nanomechanical properties and degree of tubule occlusion conferred to sound and demineralized human root dentin following treatment with a 10% (w/w) strontium acetate solution and its relation to the treatment duration and delivery method.

METHODS

24 human cervical root dentin disks (8 groups of 3) were polished through 0.25 μm. 12 disks were subjected to an acid challenge (1% citric acid, pH 3.8) for 2 min. The specimens were incubated in artificial saliva, treated by soaking or brushing with deionized (DI) water or a solution of 10% strontium acetate for 2 min twice a day for 28 days. The occlusion percent and nanomechanical properties were determined at the baseline, 5, 14 and 28 days. Cross-sectioned specimens were prepared to evaluate the depth affected by strontium acetate / dentin interaction by SEM. Statistical analysis was performed using linear mixed effects models.

RESULTS

A 10% strontium acetate treatment over 5-28 days significantly increased tubule occlusion for normal root dentin and to a lesser extent for demineralized dentin and increased the AFM based nanomechanical properties of demineralized dentin. Brushing was more effective than soaking in recovery of properties of demineralized dentin when treated with strontium. No difference in tubuleocclusion was found between the two delivery methods.

SIGNIFICANCE

Strontium acetate itself proved to have the ability to occlude dentin tubules and result in small changes in the mechanical properties of dentin.

摘要

目的

牙本质敏感症常通过促进牙本质小管阻塞来治疗。在这项体外研究中,我们评估了经 10%(w/w)醋酸锶溶液处理后对健康和脱矿人根牙本质的纳米力学性能和小管闭塞程度,并研究了其与处理时间和处理方式的关系。

方法

24 个人类颈根牙本质圆盘(8 组每组 3 个)通过 0.25μm 的砂纸进行抛光。12 个圆盘进行酸挑战(1%柠檬酸,pH3.8)2 分钟。将标本置于人工唾液中孵育,通过浸泡或用去离子(DI)水或 10%醋酸锶溶液刷洗处理,每天两次,每次 2 分钟,持续 28 天。在基线、第 5、14 和 28 天测定闭塞百分比和纳米力学性能。制备横截面标本,通过 SEM 评估受锶/牙本质相互作用影响的深度。使用线性混合效应模型进行统计分析。

结果

在 5-28 天期间,10%醋酸锶处理可显著增加正常根牙本质的小管闭塞程度,对脱矿牙本质的效果较小,并增加脱矿牙本质的 AFM 基于纳米力学性能。锶处理时,与浸泡相比,刷洗在恢复脱矿牙本质的性能方面更有效。两种输送方式之间在小管闭塞程度上没有差异。

意义

醋酸锶本身被证明具有封闭牙本质小管的能力,并导致牙本质机械性能的微小变化。

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