Souza Beatriz Martines de, Santos Daiana Moreli Soares Dos, Magalhães Ana Carolina
Department of Biological Sciences, Bauru School of Dentistry, USP - Universidade de São Paulo, Bauru, SP, Brazil.
Braz Dent J. 2018 Nov-Dec;29(6):599-605. doi: 10.1590/0103-6440201802163.
The occurrence of caries lesions adjacent to restorations is a serious problem in Dentistry. Therefore, new antimicrobial restorative materials could help to prevent recurrent carious lesions. This study evaluated the effect of a new glass ionomer cement (Ion Z) on the viability of a microcosm biofilm and on the development of enamel demineralization. Enamel samples were filled with the following materials (n=9): A) Ion-Z (FGM Ltda); B) Maxxion R (FGM Ltda); C) Ketac Fil Plus (3M ESPE) and D) no restoration (control). The samples were then exposed to human saliva mixed with McBain saliva (1:50) containing 0.2% sucrose for 14 days. The live and dead bacteria were quantified by fluorescence using a confocal laser-scanning microscope. The enamel demineralization was analyzed using transverse microradiography (TMR). The data were submitted to ANOVA/Tukey or Kruskal-Wallis/Dunn test (p<0.05). Ion Z induced a higher percentage of dead bacteria (60.96±12.0%) compared to the other groups (Maxxion R: 39.8±6.7%, Ketac Fil Plus: 43.7±9.71% and control 46.3±9.5%). All materials significantly reduced the average mineral loss compared to control (Ion-Z 25.0±4.2%vol, Maxxion R 23.4±8.0%vol, Ketac Fil Plus 30.7±7.7 and control 41.2±6.6%vol). Ion-Z was the only material able to significantly improve the mineral content at the surface layer (Zmax: 63.5±18.2%vol) compared to control (38.9±11.3%vol). Ion-Z shows antimicrobial potential, but its anti-caries effect was similar to the other materials, under this model.
修复体周围龋损的发生是牙科领域的一个严重问题。因此,新型抗菌修复材料有助于预防复发性龋损。本研究评估了一种新型玻璃离子水门汀(Ion Z)对微生态生物膜活力以及釉质脱矿发展的影响。用以下材料填充釉质样本(n = 9):A)Ion-Z(FGM Ltda);B)Maxxion R(FGM Ltda);C)Ketac Fil Plus(3M ESPE);D)无修复(对照)。然后将样本暴露于与含0.2%蔗糖的McBain唾液(1:50)混合的人唾液中14天。使用共聚焦激光扫描显微镜通过荧光对活菌和死菌进行定量。使用横向显微放射照相术(TMR)分析釉质脱矿情况。数据采用方差分析/ Tukey检验或Kruskal-Wallis / Dunn检验(p < 0.05)。与其他组相比,Ion Z诱导的死菌百分比更高(60.96±12.0%)(Maxxion R:39.8±6.7%,Ketac Fil Plus:43.7±9.71%,对照46.3±9.5%)。与对照相比,所有材料均显著降低了平均矿物质流失(Ion-Z 25.0±4.2%体积,Maxxion R 23.4±8.0%体积,Ketac Fil Plus 30.7±7.7,对照41.2±6.6%体积)。与对照(38.9±11.3%体积)相比,Ion-Z是唯一能够显著提高表层矿物质含量的材料(Zmax:63.5±18.2%体积)。在该模型下,Ion-Z显示出抗菌潜力,但其防龋效果与其他材料相似。