Hong Qing, Dong Xiaoqing, Chen Meng, Sun Hongmin, Hong Liang, Wang Yong, Li Hao, Yu Qingsong
Center for Surface Science and Plasma Technology, Department of Mechanical and Aerospace Engineering, University of Missouri, Columbia, MO, USA.
Nanova, Inc., Columbia, MO, USA.
J Oral Microbiol. 2019 Apr 19;11(1):1603524. doi: 10.1080/20002297.2019.1603524. eCollection 2019.
Management of dental plaque/biofilms is critical to maintain oral health. The objective of this study is to investigate the treatment effects of non-thermal atmospheric gas plasmas on oral biofilm formation and recovery under and conditions. biofilms, a significant contributor to tooth decay, were cultured and treated by plasma. It was found that plasma treatment not only significantly reduced the biofilms, but also increased the metabolic activity of the bacteria in the biofilms. As compared with untreated control group, the cell metabolic activity, as measured by MTT assay, increased by 273%, and the aconitase activity increased by 446% for the plasma-treated group. The increased metabolic activity of the plasma-treated biofilm bacteria enhanced their susceptibility to antibiotic and host defense. An animal model using a total of 60 female rats (19 days old) were used to evaluate the anti-caries effects on the molars by 2 min of plasma treatment. It was found that, 6 months after the plasma treatment, the decayed surfaces were reduced by 62.5% on the upper molars and by 31.6% on the lower molars as compared with the untreated upper and lower molars, respectively. These and data demonstrate that the physiological state change of the biofilm due to plasma treatment provided benefit to caries control and prevention.
牙菌斑/生物膜的管理对于维持口腔健康至关重要。本研究的目的是调查非热大气气体等离子体在[具体条件1]和[具体条件2]下对口腔生物膜形成和恢复的治疗效果。作为龋齿的一个重要促成因素,[生物膜名称]生物膜被培养并用等离子体进行处理。研究发现,等离子体处理不仅显著减少了[生物膜名称]生物膜,还提高了生物膜中细菌的代谢活性。与未处理的对照组相比,通过MTT法测定,等离子体处理组的细胞代谢活性增加了273%,乌头酸酶活性增加了446%。等离子体处理的生物膜细菌代谢活性的增加增强了它们对抗生素和宿主防御的敏感性。使用总共60只雌性大鼠(19日龄)的动物模型来评估2分钟等离子体处理对臼齿的防龋效果。研究发现,与未处理的上、下臼齿相比,等离子体处理6个月后,上臼齿的龋坏表面减少了62.5%,下臼齿减少了31.6%。这些[具体数据1]和[具体数据2]数据表明,等离子体处理导致的生物膜生理状态变化有利于龋齿的控制和预防。