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Evaluation of an Adhesive Containing Calcium Salt of Acidic Monomers on Inhibition of Biofilm Formation of Bacteria Related to Root Caries

机译:酸性单体钙盐的粘合剂评价抑制生物膜形成与根龋的细菌形成

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Root caries is a critical dental problem for the elderly people due to increased tooth retention and exposed root surfaces in aged society. The presence of a cariogenic biofilm and fermentable carbohydrates is the main etiologic factors. Streptococcus mutans, lactobacilli and Actinomyces spp. have been demonstrated to be associated with root caries. Currently, dental materials with multifunctional features have been combined into clinical adhesives. Calcium salt of acidic monomer (calcium salt of 4-methacryloxyethyl trimellitic acid or CMET) has been demonstrated to promote a significant remineralization and an adhesive containing CMET has been developed. However, there is no data regarding its antimicrobial potential. This study aimed to evaluate the property of an adhesive containing CMET and 10-methacryloyloxydecyl dihydrogen calcium phosphate (MDCP) on the biofilm formation of bacteria related to root caries. The adhesive was applied onto the flat-bottom surface of 96-well plate and LED light-cured. Then it was coated with sterile saliva at 37 °C for 60 min. The bacterial suspensions of 107 colony forming unit (CFU)/mL (Streptococcus mutans ATCC 25715, Lactobacillus casei ATCC 334 and Actinomyvces viscosus ATCC 19246) were added and incubated at 37°C in 5% CO2 atmosphere for 24 h to allow the biofilm formation. The amount of vital biofilm was determined by WST-8 Microbial Cell Counting Kit (Dojindo Molecular Technologies, USA). All tests were carried out in triplicate and repeated three times. Student's t-test was employed for the statistical analysis. The significant suppressive effects were clearly noticed on S. mutans compared with a control. The percentage of biofilm reduction was nearly 65%. A 2% biofilm reduction was found on L. casei and A. viscosus, though no statistical significant decreases of biofilm were observed compared with a control. In conclusion, an adhesive containing calcium salt of acidic monomers could significantly inhibit biofilm formation of S. mutans. Using this adhesive can be beneficial for the prevention of root caries on the tooth surface.
机译:根龋为老年人的关键牙科问题,因为牙齿保留和老年社会的暴露根表面。存在致癌生物膜和可发酵的碳水化合物是主要的病因因素。细菌球菌,乳酸杆菌和放样SPP。已被证明与根龋相关。目前,具有多功能特征的牙科材料已组合成临床粘合剂。已经证明酸性单体的钙盐(4-甲基丙烯酰甲基偏甲基偏甲基酸或CEMET)以促进显着的再矿化,并且已经开发了含有CEMET的粘合剂。但是,没有关于其抗微生物潜力的数据。本研究旨在评估粘合剂的粘合剂和10-甲基丙烯酰氧基二氢钙磷酸盐(MDCP)的生物膜形成与根龋的粘合剂的性质。将粘合剂施加到96孔板的平坦底表面上,LED光固化。然后将其在37℃下涂有无菌唾液60分钟。加入107个菌落形成单元(CFU)/ mL(链球菌异常ATCC 25715,Lactobacillus酪虫ATCC 334和放电素粘性剂ATCC 19246)的细菌悬浮液,并在37℃下在5%的CO 2气氛中温育24小时以允许生物膜形成。重要的生物膜的量由WST-8微生物细胞计数试剂盒(Dojindo分子技术,美国)测定。所有测试均一式三份进行,重复三次。学生的T检验用于统计分析。与对照相比,在S. mutans上清楚地注意到显着的抑制作用。生物膜减少的百分比差约近65%。在L.酪虫和A.粘液中发现了2%的生物膜还原,但与对照相比,观察到生物膜没有统计显着降低。总之,含有酸性单体钙盐的粘合剂可显着抑制S. mutans的生物膜形成。使用这种粘合剂可以有利于防止牙齿表面上的根龋。

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