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Novel anti-biofouling light-curable fluoride varnish containing 2-methacryloyloxyethyl phosphorylcholine to prevent enamel demineralization

机译:含有2-甲基丙烯酰氧基乙基磷酸胆碱的新型抗生物污垢光固化氟化物清漆可防止牙釉质脱矿

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摘要

We evaluated the efficacy of light-curable fluoride varnish (LCFV) that contains 2-methacryloyloxyethyl phosphorylcholine (MPC) in terms of anti-biofouling properties and prevention of tooth enamel demineralization. MPC was mixed with and incorporated into LCFV at 0 (control), 1.5, 3.0, 5.0, 10.0, 20.0, and 40.0 weight percentage (wt%). Addition of high wt% of MPC resulted in increased film thickness and decreased the degree of conversion, indicating loss of the advantageous properties of LCFV. Addition of 1.5, 3, or 5 wt% MPC significantly reduced the amount of bovine serum albumin adsorbed from a solution and proteins adsorbed from brain heart infusion medium compared to the control (P < 0.001). A similar pattern was observed for bacterial adhesion: significantly less Streptococcus mutans cells adhered on the surface of LCFV with 1.5, 3, or 5 wt% MPC (P < 0.001) than on the control, and similar results were obtained for Actinomyces naeslundii and Streptococcus sanguinis adherence to LCFV with 3 wt% MPC. Finally, bacterial adhesion, surface microhardness loss, and the depth of demineralization were substantially lower on bovine tooth enamel surface coated with LCFV containing 3 wt% of MPC than in the control treatment (0 wt% MPC). Therefore, this novel LCFV containing a low concentration of MPC (e.g., 3 wt%) would be effective in anti-biofouling while maintaining the important advantageous features of light-curable fluoride in preventing demineralization.
机译:我们从抗生物污垢性能和防止牙釉质脱矿的角度评估了包含2-甲基丙烯酰氧基乙基磷酰胆碱(MPC)的光固化氟化物清漆(LCFV)的功效。将MPC以0(对照),1.5、3.0、5.0、10.0、20.0和40.0重量%(wt%)混合并掺入LCFV中。加入高重量%的MPC导致膜厚度增加和转化率降低,表明丧失了LCFV的有利性能。与对照组相比,添加1.5、3或5%(重量)的MPC显着减少了溶液中牛血清白蛋白的量和脑心灌注介质中吸附的蛋白质的量(P <0.001)。观察到相似的细菌粘附模式:与对照相比,在带有1.5、3或5wt%MPC的LCFV表面粘附的变形链球菌细胞少得多(P <0.001),并且对于内生放线菌和链球菌也获得了相似的结果。血红蛋白对LCFV的依从性为3%wt%MPC。最后,涂有包含3%(重量)MPC的LCFV的牛牙釉质表面的细菌附着力,表面显微硬度损失和脱矿质深度明显低于对照处理(0%(重量)MPC)。因此,这种含有低浓度MPC(例如3wt%)的新型LCFV在防止生物结垢方面将是有效的,同时保持了可光固化的氟化物在防止脱盐方面的重要的有利特征。

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