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将洗必泰与纳米级三聚磷酸钠掺入玻璃离子水门汀中:对机械和微生物性能的影响及对牙釉质脱矿的抑制作用。

Incorporation of chlorhexidine and nano-sized sodium trimetaphosphate into a glass-ionomer cement: Effect on mechanical and microbiological properties and inhibition of enamel demineralization.

机构信息

Department of Pediatric Dentistry and Public Health, São Paulo State University (UNESP), School of Dentistry, Araçatuba, São Paulo, Brazil.

Department of Surgery and Integrated Clinic, São Paulo State University (UNESP), School of Dentistry, Araçatuba, São Paulo, Brazil.

出版信息

J Dent. 2019 May;84:81-88. doi: 10.1016/j.jdent.2019.04.001. Epub 2019 Apr 3.

DOI:10.1016/j.jdent.2019.04.001
PMID:30953673
Abstract

OBJECTIVE

To evaluate the antimicrobial/antibiofilm and mechanical properties, and the effect on enamel demineralization of a resin-modified GIC (RMGIC) containing CHX and nano-sized sodium trimetaphosphate (TMP).

METHODS

RMGIC was associated with CHX (1.25 or 2.5%) and/or TMP (7 or 14%). Antimicrobial and antibiofilm activity were assessed using agar diffusion test and evaluation of biofilm metabolism, respectively. In addition, fluoride (F) and TMP releases as well as the diametral tensile (DTS) and compressive (CS) strength were determined. The percentage of mineral loss (%SH), integrated loss of subsurface hardness (ΔKHN) and enamel F concentrations were also evaluated.

RESULTS

RMGICs containing CHX associated or not with TMP presented higher inhibition zones and effect on S. mutans biofilm. A reduction on CS was observed only for RMGIC + 2.5%CHX and on DTS for RMGIC + 2.5%CHX + 14%TMP. The highest F and TMP releases and lowest %SH and ΔKHN values were detected for RMGIC + 1.25%CHX + 14%TMP and RMGIC + 2.5%CHX + 14%TMP. Higher enamel F concentrations were observed for TMP groups.

CONCLUSION

1.25%CHX and 14%TMP increased antimicrobial/antibiofilm action and the ability to prevent enamel demineralization, with minimal effect on the mechanical properties of RMGIC.

CLINICAL SIGNIFICANCE

RMGIC containing CHX and TMP is an alternative material for patients at high risk for dental caries and can be indicated for low-stress regions or provisional restorations.

摘要

目的

评估含有 CHX 和纳米级三偏磷酸钠(TMP)的树脂改良型玻璃离子水门汀(RMGIC)的抗菌/抗生物膜性能和机械性能,以及对牙釉质脱矿的影响。

方法

将 RMGIC 与 CHX(1.25%或 2.5%)和/或 TMP(7%或 14%)联合使用。采用琼脂扩散试验评估抗菌和抗生物膜活性,分别评估生物膜代谢。此外,还测定了氟(F)和 TMP 的释放量,以及直径拉伸强度(DTS)和抗压强度(CS)。还评估了矿物质损失百分比(%SH)、表面下硬度损失积分(ΔKHN)和牙釉质 F 浓度。

结果

含有 CHX 且与 TMP 联合或不联合的 RMGIC 呈现出更高的抑制区和对变异链球菌生物膜的影响。仅观察到 RMGIC+2.5%CHX 的 CS 降低,以及 RMGIC+2.5%CHX+14%TMP 的 DTS 降低。RMGIC+1.25%CHX+14%TMP 和 RMGIC+2.5%CHX+14%TMP 检测到最高的 F 和 TMP 释放以及最低的%SH 和 ΔKHN 值。TMP 组观察到更高的牙釉质 F 浓度。

结论

1.25%CHX 和 14%TMP 增强了抗菌/抗生物膜作用和预防牙釉质脱矿的能力,对 RMGIC 的机械性能影响最小。

临床意义

含有 CHX 和 TMP 的 RMGIC 是对龋齿高危患者的一种替代材料,可用于低应力区域或临时修复。

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