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An in vitro model to assess effects of a desensitising agent on bacterial biofilm formation

机译:评估脱敏剂对细菌生物膜形成影响的体外模型

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Desensitising agents are added to dentifrices to occlude exposed dentine tubules and reduce pain associated with dentine hypersensitivity. In occluding the tubules these agents may alter the surface layer of the dentine and consequently affect bacterial biofilm formation. This research sought to examine the effects of desensitising agents on dentinal biofilms using an in vitro model. A constant depth film fermenter (CDFF) was selected to mimic the oral environment and human dentine with exposed tubules was analysed. Calcium sodium phosphosilicate (CSPS) was selected as a model desensitising agent. Dentine discs were treated with pumice or CSPS-containing dentifrices with or without fluoride, or left untreated (control). Dual-species biofilms of Streptococcus mutans and Streptococcus sobrinus were grown in artificial saliva and analysed by viable counts, polymerase chain reaction (PCR) and scanning electron microscopy (SEM). SEM images confirmed the presence of occluded tubules after CSPS application and demonstrated the formation of biofilms containing extracellular matrix material. Analysis of PCR and viable count data using a one-way ANOVA showed no significant differences for bacterial composition for any of the four treatments. There were, however, trends towards increased numbers of bacteria for the pumice and CSPS treated samples which was reversed by the addition of fluoride to CSPS. In conclusion, CSPS was not found to have a significant effect on biofilms and an in vitro model for testing desensitising agents has been developed, however, further work is required to improve the reproducibility of the biofilms formed and to explore the trends seen.
机译:将脱敏剂添加到洁齿剂中,以堵塞暴露的牙本质小管并减少与牙本质过敏有关的疼痛。在阻塞小管时,这些药物可能会改变牙本质的表面层,从而影响细菌生物膜的形成。这项研究试图使用体外模型研究脱敏剂对牙本质生物膜的影响。选择恒定深度的薄膜发酵罐(CDFF)来模拟口腔环境,并分析具有裸露小管的人牙本质。选择磷酸硅酸钠钙(CSPS)作为模型脱敏剂。用含或不含氟化物的浮石或含CSPS的洁牙剂治疗牙本质盘,或不进行处理(对照)。变形链球菌和sobrinus链球菌的双物种生物膜在人工唾液中生长,并通过活菌计数,聚合酶链反应(PCR)和扫描电子显微镜(SEM)进行分析。 SEM图像证实了CSPS应用后存在阻塞的小管,并证实了含有细胞外基质材料的生物膜的形成。使用单向方差分析对PCR和可行计数数据进行分析表明,四种处理中任何一种的细菌组成均无显着差异。但是,浮石和CSPS处理的样品中细菌数量呈增加趋势,而向CSPS中添加氟化物则可逆转细菌数量。总之,未发现CSPS对生物膜有显着影响,并且已经开发了用于测试脱敏剂的体外模型,但是,还需要进一步的工作来改善形成的生物膜的可再现性并探索所看到的趋势。

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