Pandit Santosh, Jung Ji-Eun, Choi Hyeon-Mi, Jeon Jae-Gyu
a Department of Preventive Dentistry, School of Dentistry, Institute of Oral Bioscience and BK 21 Plus Program , Chonbuk National University , Jeonju , Republic of Korea.
b Department of Dentistry , Presbyterian Medical Center , Jeonju , Republic of Korea.
Biofouling. 2018 Jan;34(1):53-61. doi: 10.1080/08927014.2017.1404583. Epub 2017 Dec 4.
The present study investigated the effect of periodic 1-min fluoride treatments on Streptococcus mutans biofilms and then determined the relationship between anti-biofilm activity, treatment frequency, and fluoride concentration using a linear-fitting procedure. S. mutans biofilms were periodically treated (1-min/treatment) with fluoride during biofilm formation and analyzed using microbiological methods, confocal microscopy, and real-time PCR. The results indicated that reductions in the dry weight and acidogenicity of biofilms due to periodic fluoride treatment occurred in a concentration dependent manner. The reduction in dry weight without affecting bacterial cell viability was observed mainly due to the inhibitory effect of fluoride on gtfB and gtfC gene expression, which suppresses EPS production and avoids reduction of the pH below the critical point on the tooth surface. This study suggests that brief periodic exposure to appropriate fluoride concentrations through mouthwashes and toothpastes may affect the virulence and composition of cariogenic biofilms and subsequently prevent dental caries.
本研究调查了周期性1分钟氟化物处理对变形链球菌生物膜的影响,然后使用线性拟合程序确定了抗生物膜活性、处理频率和氟化物浓度之间的关系。在生物膜形成过程中,对变形链球菌生物膜进行周期性(每次处理1分钟)氟化物处理,并使用微生物学方法、共聚焦显微镜和实时PCR进行分析。结果表明,周期性氟化物处理导致生物膜干重和产酸性的降低呈浓度依赖性。观察到干重的降低而不影响细菌细胞活力,主要是由于氟化物对gtfB和gtfC基因表达的抑制作用,这抑制了EPS的产生,并避免牙齿表面pH值降至临界点以下。本研究表明,通过漱口水和牙膏短暂周期性接触适当浓度的氟化物可能会影响致龋生物膜的毒力和组成,从而预防龋齿。