How does ultrasonic cavitation remove dental bacterial biofilm?

生物膜 空化 微气泡 超声波传感器 气泡 材料科学 化学 微生物学 超声波 纳米技术 声学 细菌 生物 物理 机械 遗传学
作者
Nina Vyas,Qianxi Wang,Kawa Manmi,Rachel Sammons,Sarah A. Kuehne,A. D. Walmsley
出处
期刊:Ultrasonics Sonochemistry [Elsevier BV]
卷期号:67: 105112-105112 被引量:59
标识
DOI:10.1016/j.ultsonch.2020.105112
摘要

Bacterial biofilm accumulation is problematic in many areas, leading to biofouling in the marine environment and the food industry, and infections in healthcare. Physical disruption of biofilms has become an important area of research. In dentistry, biofilm removal is essential to maintain health. The aim of this study is to observe biofilm disruption due to cavitation generated by a dental ultrasonic scaler (P5XS, Acteon) using a high speed camera and determine how this is achieved. Streptococcus sanguinis biofilm was grown on Thermanox™ coverslips (Nunc, USA) for 4 days. After fixing and staining with crystal violet, biofilm removal was imaged using a high speed camera (AX200, Photron). An ultrasonic scaler tip (tip 10P) was held 2 mm away from the biofilm and operated for 2 s. Bubble oscillations were observed from high speed image sequences and image analysis was used to track bubble motion and calculate changes in bubble radius and velocity on the surface. The results demonstrate that most of the biofilm disruption occurs through cavitation bubbles contacting the surface within 2 s, whether individually or in cavitation clouds. Cleaning occurs through shape oscillating microbubbles on the surface as well as through fluid flow.
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