首页> 外文期刊>Journal of Dental Research: Official Publication of the International Association for Dental Research >Removal of Dental Biofilms with an Ultrasonically Activated Water Stream.
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Removal of Dental Biofilms with an Ultrasonically Activated Water Stream.

机译:用超声波激活的水流去除牙齿生物膜。

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Acidogenic bacteria within dental plaque biofilms are the causative agents of caries. Consequently, maintenance of a healthy oral environment with efficient biofilm removal strategies is important to limit caries, as well as halt progression to gingivitis and periodontitis. Recently, a novel cleaning device has been described using an ultrasonically activated stream (UAS) to generate a cavitation cloud of bubbles in a freely flowing water stream that has demonstrated the capacity to be effective at biofilm removal. In this study, UAS was evaluated for its ability to remove biofilms of the cariogenic pathogen Streptococcus mutans UA159, as well as Actinomyces naeslundii ATCC 12104 and Streptococcus oralis ATCC 9811, grown on machine-etched glass slides to generate a reproducible complex surface and artificial teeth from a typodont training model. Biofilm removal was assessed both visually and microscopically using high-speed videography, confocal scanning laser microscopy (CSLM), and scanning electron microscopy (SEM). Analysis by CSLM demonstrated a statistically significant 99.9% removal of S. mutans biofilms exposed to the UAS for 10 s, relative to both untreated control biofilms and biofilms exposed to the water stream alone without ultrasonic activation (P < 0.05). The water stream alone showed no statistically significant difference in removal compared with the untreated control (P = 0.24). High-speed videography demonstrated a rapid rate (151 mm(2) in 1 s) of biofilm removal. The UAS was also highly effective at S. mutans, A. naeslundii, and S. oralis biofilm removal from machine-etched glass and S. mutans from typodont surfaces with complex topography. Consequently, UAS technology represents a potentially effective method for biofilm removal and improved oral hygiene.
机译:牙菌斑生物膜中的产酸细菌是龋齿的病原。因此,用有效的生物膜去除策略维持健康的口腔环境对于限制龋齿以及停止进展为牙龈炎和牙周炎很重要。近来,已经描述了一种新颖的清洁设备,该设备使用超声激活的流(UAS)在自由流动的水流中生成气泡的气蚀云,这已经证明了有效去除生物膜的能力。在这项研究中,对UAS评估了其去除致癌病原体变形链球菌UA159以及内生放线菌ATCC 12104和口腔链球菌ATCC 9811的生物膜的能力,这些生物膜生长在机器蚀刻的玻璃载玻片上,可产生可复制的复杂表面和人造牙齿来自台风训练模型。使用高速摄影,共聚焦扫描激光显微镜(CSLM)和扫描电子显微镜(SEM)在视觉和显微镜下评估生物膜的去除。 CSLM分析表明,相对于未经处理的对照生物膜和仅暴露于水流而未经超声活化的生物膜,暴露于UAS 10 s的变形链球菌生物膜的统计学显着性去除率为99.9%(P <0.05)。与未处理的对照组相比,仅水流的去除率无统计学差异(P = 0.24)。高速摄影表明生物膜的去除速度非常快(151毫米(2)in 1 s)。 UAS在从机械蚀刻玻璃上去除变形链球菌,内脏链球菌和口头链球菌生物膜以及从地形复杂的台风表面去除变形链球菌方面也非常有效。因此,UAS技术代表了一种潜在的有效去除生物膜和改善口腔卫生的方法。

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