School of Dentistry, College of Medical and Dental Sciences, University of Birmingham, 5 Mill Pool Way, Birmingham B5 7EG, UK.
School of Mathematics, University of Birmingham, Edgbaston, Birmingham B15 2TT, UK.
Ultrason Sonochem. 2021 Jan;70:105338. doi: 10.1016/j.ultsonch.2020.105338. Epub 2020 Sep 3.
The use of cavitation for improving biofilm cleaning is of great interest. There is no system at present that removes the biofilm from medical implants effectively and specifically from dental implants. Cavitation generated by a vibrating dental ultrasonic scaler tip can clean biomaterials such as dental implants. However, the cleaning process must be significantly accelerated for clinical applications. In this study we investigated whether the cavitation could be increased, by operating the scaler in carbonated water with different CO concentrations. The cavitation around an ultrasonic scaler tip was recorded with high speed imaging. Image analysis was used to calculate the area of cavitation. Bacterial biofilm was grown on surfaces and its removal was imaged with a high speed camera using the ultrasonic scaler in still and carbonated water. Cavitation increases significantly with increasing carbonation. Cavitation also started earlier around the tips when they were in carbonated water compared to non-carbonated water. Significantly more biofilm was removed when the scaler was operated in carbonated water. Our results suggest that using carbonated water could significantly increase and accelerate cavitation around ultrasonic scalers in a clinical situation and thus improve biofilm removal from dental implants and other biomaterials.
利用空化作用来提高生物膜清洁效果具有重要意义。目前还没有系统能够有效地、有针对性地从医疗植入物(尤其是牙科植入物)上去除生物膜。通过振动式牙科超声洁牙机的尖端产生的空化作用可以清洁牙科植入物等生物材料。然而,为了临床应用,清洁过程必须显著加快。在这项研究中,我们研究了通过在不同 CO 浓度的碳酸水中操作洁牙机,是否可以增加空化作用。使用高速成像记录了超声洁牙机尖端周围的空化作用。图像分析用于计算空化区域。在表面上生长细菌生物膜,并使用高速摄像机在静止和碳酸水中使用超声洁牙机对其去除情况进行成像。随着碳酸化作用的增加,空化作用显著增加。与非碳酸化水相比,当尖端处于碳酸化水中时,空化作用也更早开始。当洁牙机在碳酸水中运行时,去除的生物膜明显更多。我们的结果表明,在临床情况下,使用碳酸水可以显著增加和加速超声洁牙机周围的空化作用,从而从牙科植入物和其他生物材料上去除生物膜。