变异链球菌生物膜在牙釉质和牙根表面的体外积累和清除

Anne Breivik, Aida Mulic, A. Sehic, H. Valen, S. Kopperud, Linda Stein, Qalbi Khan
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引用次数: 0

摘要

研究目的本研究旨在定量研究变异链球菌生物膜在牙釉质和牙根表面的积累情况,并评估在封闭的流动室系统中使用(1)实验牙膏和(2)水对生物膜的清除量:将 8 颗健全的前臼齿嵌入环氧树脂中,用碳化硅研磨纸抛光,以显示牙釉质和牙根表面。为了模拟生物膜,先制备变异链球菌培养物并在牙齿表面培养过夜,然后将其置于流动室中的 2 升 Milli Q 水或 2 升 40% 实验牙膏中。生物膜的数量通过荧光显微镜进行测量和量化。使用 Microsoft® Excel® (MS Excel 2016)记录和分析平均荧光值:结果:生物膜在牙釉质和牙根表面的生长能力相同。与未经处理的表面相比,使用水和 40% 实验牙膏可显著减少牙釉质和牙本质根部被生物膜覆盖的面积(p < 0.01)。与牙根表面相比,使用水和牙膏处理的牙釉质表面去除的生物膜明显较多(p < 0.01)。在牙釉质和牙根牙本质表面,使用水和牙膏去除的生物膜略少,但差异无统计学意义:结果表明,在流动室中使用水和 40% 的实验牙膏去除牙根表面的生物膜少于去除牙釉质的生物膜。评估口腔生物膜的积累情况以及监测牙釉质和牙根表面生物膜的形成,为口腔卫生专业人员提供了重要的方向,可以加强龋齿预防的意义。因此,改善老年人的口腔卫生习惯应被视为预防根龋的一项重要措施。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Accumulation and removal of Streptococcus mutans biofilm on enamel and root surfaces in vitro
Objective: This study aimed to quantitatively investigate the accumulation of Streptococcus mutans biofilm on enamel and root surfaces and assess the amount of biofilm removal using (1) experimental toothpaste and (2) water, in a closed system of flow chamber. Methods: Eight sound premolars were embedded in epoxy resin and polished with silicon carbide grinding papers to display enamel and root surfaces. To mimic biofilm, cultures of Streptococcus mutans were prepared and grown on the tooth surfaces over night before they were exposed to either 2 liters of Milli Q water or 2 liters of 40% experimental toothpaste in the flow chamber. The amount of biofilm was measured and quantified in Fluorescence microscopy. Mean fluorescence values were recorded and analysed using Microsoft® Excel® (MS Excel 2016). Results: The ability to grow biofilm was equally present at both the enamel and root surfaces. The use of water and 40% experimental toothpaste showed a significant reduction of areas covered with biofilm on both enamel and root dentin in comparison to untreated surfaces (p < 0.01). Significantly more biofilm was removed from enamel compared to root surfaces when treated with either water and toothpaste (p < 0.01). Slightly less biofilm was removed by the use of water compared to toothpaste on both enamel and root dentin surfaces, although the differences were not statistically significant. Conclusion: The results indicate that less biofilm is removed from the root surfaces than enamel by the use of water and 40% experimental toothpaste in flow chamber. Assessing oral biofilm accumulation and monitoring biofilm formation on enamel and root dentin surfaces give oral health professionals important directions that could strenghten the significance of dental caries prevention. Improving older individuals’ oral hygiene practices should therefore be considered an important measure to prevent root caries.
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