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正畸材料的表面特性及其对变形链球菌黏附的影响。

Surface characteristics of orthodontic materials and their effects on adhesion of mutans streptococci.

作者信息

Lee Seung-Pyo, Lee Shin-Jae, Lim Bum-Soon, Ahn Sug-Joon

机构信息

Department of Oral Anatomy, Seoul National University, Seoul, Korea.

出版信息

Angle Orthod. 2009 Mar;79(2):353-60. doi: 10.2319/021308-88.1.

Abstract

OBJECTIVE

To test the hypothesis that there are no significant differences in the adhesion of mutans streptococci (MS) to various orthodontic materials based on their surface characteristics.

MATERIALS AND METHODS

Surface roughness (SR) and surface free energy (SFE) characteristics were investigated for nine different orthodontic materials (four orthodontic adhesives, three bracket raw materials, hydroxyapatite blocks, and bovine incisors) using confocal laser scanning microscopy and sessile drop method. Each material, except the bovine incisors, was incubated with whole saliva or phosphate-buffered saline for 2 hours. Adhesion assays were performed by incubating tritium-labeled MS with each material for 3 or 6 hours.

RESULTS

Orthodontic adhesives had higher SFE characteristics and lower SR than bracket materials. Orthodontic adhesives showed a higher MS retaining capacity than bracket materials, and MS adhesion to resin-modified glass ionomer and hydroxyapatite was highest. Extended incubation time increased MS adhesion, while saliva coating did not significantly influence MS adhesion. SFE, specifically its dispersive and polar components, was positively correlated with MS adhesion, irrespective of saliva coating.

CONCLUSIONS

The hypothesis is rejected. This study suggests that SFE characteristics play an important role in the initial MS adhesion to orthodontic materials.

摘要

目的

检验关于变形链球菌(MS)基于其表面特性对各种正畸材料的黏附不存在显著差异的假设。

材料与方法

使用共聚焦激光扫描显微镜和静滴法研究了九种不同正畸材料(四种正畸黏结剂、三种托槽原材料、羟基磷灰石块和牛切牙)的表面粗糙度(SR)和表面自由能(SFE)特性。除牛切牙外,每种材料均与全唾液或磷酸盐缓冲盐水孵育2小时。通过将氚标记的MS与每种材料孵育3或6小时进行黏附试验。

结果

正畸黏结剂的SFE特性较高,SR低于托槽材料。正畸黏结剂显示出比托槽材料更高的MS保留能力,并且MS对树脂改性玻璃离子体和羟基磷灰石的黏附最高。延长孵育时间会增加MS黏附,而唾液包被对MS黏附没有显著影响。无论唾液包被情况如何,SFE,特别是其分散和极性成分,与MS黏附呈正相关。

结论

该假设被拒绝。本研究表明SFE特性在MS对正畸材料的初始黏附中起重要作用。

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