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新型玻璃离子水门汀在微生态生物膜模型下对牙釉质的抗菌及防龋作用

Antimicrobial and Anti-Caries Effect of New Glass Ionomer Cement on Enamel Under Microcosm Biofilm Model.

作者信息

Souza Beatriz Martines de, Santos Daiana Moreli Soares Dos, Magalhães Ana Carolina

机构信息

Department of Biological Sciences, Bauru School of Dentistry, USP - Universidade de São Paulo, Bauru, SP, Brazil.

出版信息

Braz Dent J. 2018 Nov-Dec;29(6):599-605. doi: 10.1590/0103-6440201802163.

Abstract

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.

摘要

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。

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