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Incorporation of zwitterionic materials into light-curable fluoride varnish for biofilm inhibition and caries prevention

机译:将两性离子材料掺入可光固化的氟化物清漆,用于生物膜抑制作用和龋齿预防

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We incorporated zwitterionic materials into light-curable fluoride varnish (LCFV) in order to inhibit biofilm accumulation and prevent dental caries, and the properties of LCFV with three different zwitterionic materials, namely, 2-methacryloyloxyethyl phosphorylcholine (MPC), carboxybetaine methacrylate (CBMA), and sulfobetaine methacrylate (SBMA) polymers (each at a weight percentage of 3%), were compared; unmodified LCFV without any zwitterionic material was used as a control. Material properties including film thickness and degree of conversion (DC) of each type of LCFV were evaluated. In addition, protein-repellent effects and inhibitory effects on Streptococcus mutans adhesion and saliva-derived biofilm accumulation of LCFV were estimated. Finally, the preventive effect of LCFV on enamel demineralization was assessed in vitro on extracted human teeth specimens stored in S. mutans-containing medium. The film thickness of LCFV significantly decreased with the incorporation of zwitterionic materials compared to the control LCFV, whereas there were no significant differences in the DC among all of the LCFV groups. Furthermore, the amount of adsorbed protein, adherent S. mutans colony-forming unit (CFU) counts, and saliva-derived biofilm thickness and biomass were all significantly lower for LCFV with incorporated zwitterionic materials compared with the control. All LCFV groups including the control showed certain preventive effects against enamel demineralization during a 14-day immersion in the medium with S. mutans and sucrose, and the depth of demineralization was significantly lower in LCFV with zwitterionic materials than in the control. Thus, the incorporation of zwitterionic materials such as MPC, CBMA, and SBMA appears to confer superior antifouling effects to LCFV.
机译:我们将两性离子材料掺入可光固化的氟化物清漆(LCFV),以抑制生物膜积累并防止龋齿,以及LCFV的性质,具有三种不同的两性离子材料,即2-甲基丙烯酰氧基乙基磷酸胆碱(MPC),羧基丙烯酸甲酯(CBMA)和磺基丙烯酸酯(SBMA)聚合物(每个均为3%的重量百分比);未经修改的LCFV没有任何两性离子材料用作对照。评价包括每种类型LCFV的膜厚度和转化度(DC)的材料特性。此外,估计了对链球菌粘连和唾液衍生的LCFV的粘连性粘连和唾液衍生的生物膜积累的蛋白质驱虫效应和抑制作用。最后,在储存在含含量的含量的载体培养基中的储存的人齿标本的体外评估LCFV对牙釉质脱矿质的预防效果。与对照LCFV相比,通过掺入两性离子材料的LCFV的膜厚度显着降低,而所有LCFV组中的DC在DC中没有显着差异。此外,吸附的蛋白质粘附蛋白质粘附的蛋白质形成单位(CFU)计数和唾液衍生的生物膜厚度和生物质对于LCFV而言,对于与对照相比,掺入的两性离子材料均显着降低。包括该控制的所有LCFV基团显示出在培养基中浸泡中的14天浸泡期间对搪瓷脱矿质的一定的预防效果,并且脱矿质的深度在LCFV中具有比在对照中的浸出性。因此,掺入诸如MPC,CBMA和SBMA的两性离子材料,似乎向LCFV赋予卓越的防污效应。

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