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含氟氨基酸涂料对多物种生物膜的生物膜调节反应。

Biofilm modulatory response of arginine-fluoride varnish on multi-species biofilm.

机构信息

Faculty of Dentistry, The University of Hong Kong, Hong Kong.

Faculty of Dentistry, The University of Hong Kong, Hong Kong; Faculty of Dental Medicine, Al-Azhar University, Cairo, Egypt.

出版信息

J Dent. 2022 Jul;122:104096. doi: 10.1016/j.jdent.2022.104096. Epub 2022 Mar 17.

Abstract

OBJECTIVES

To examine the biofilm modulatory effect of arginine (Arg)-fluoride (F) varnish on multi-species biofilms.

METHODS

Experimental varnishes were prepared by incorporating L-Arg (1, 2, and 4%) in 5% NaF varnish, which served as the control. Multi-species biofilms comprising Streptococcus mutans, Streptococcus sanguinis and Streptococcus gordonii were grown on hydroxyapatite (HA) discs and treated with the Arg and F released from the experimental and control groups. The HA discs with treated biofilms were examined for biofilm composition. The biofilm thickness and live/dead counts were investigated using confocal microscopic imaging, while biofilm polysaccharides, proteins, and extracellular DNA (eDNA) were assessed spectrophotometrically. Bacterial composition in biofilms was analysed using viability real-time quantitative polymerase chain reaction (qPCR). The relative gene expression (RGE) was determined for gtfB, SMU.150, nlmD, arcA, and sagP.

RESULTS

Both the 2 and 4% Arg-NaF groups reduced biofilm thickness, with the 4% Arg-NaF group showing a significantly greater proportion of dead bacteria, followed by 1 and 2% Arg-NaF (p < 0.001). All Arg-NaF groups significantly reduced the carbohydrate content of the biofilm, while the 4% Arg-NaF-treated biofilms demonstrated higher concentration of eDNA and proteins compared to the control NaF (p < 0.001). Expression of gtfB, SMU.150, and nlmD were significantly downregulated in 4% Arg-NaF-treated biofilms; while 2% Arg-NaF enhanced the expression of arcA. Both 2% Arg-NaF and 4% Arg-NaF significantly increased the expression of sagP.

CONCLUSION

The incorporation of L-arginine (2%/4%) enhances the biofilm modulatory effect of 5% NaF varnish through released Arg and F.

CLINICAL SIGNIFICANCE

The study results indicate that Arg-F varnish (at 2%/4% w/v. Arg) has the potential to modulate cariogenic biofilms in high-risk individuals.

摘要

目的

研究精氨酸(Arg)-氟化物(F)涂料对多种物种生物膜的生物膜调节作用。

方法

通过将 L-Arg(1%、2%和 4%)掺入 5%NaF 涂料中制备实验性涂料,该涂料作为对照。将包含变形链球菌、血链球菌和戈登链球菌的多物种生物膜在羟基磷灰石(HA)圆盘上生长,并用实验组和对照组释放的 Arg 和 F 处理。用处理过的生物膜的 HA 圆盘检查生物膜成分。使用共焦显微镜成像研究生物膜厚度和活菌/死菌计数,同时使用分光光度法评估生物膜多糖、蛋白质和细胞外 DNA(eDNA)。使用实时定量聚合酶链反应(qPCR)分析生物膜中的细菌组成。通过相对基因表达(RGE)确定 gtfB、SMU.150、nlmD、arcA 和 sagP 的基因表达。

结果

2%和 4%Arg-NaF 组均降低了生物膜厚度,其中 4%Arg-NaF 组的死细菌比例显著更高,其次是 1%和 2%Arg-NaF(p<0.001)。所有 Arg-NaF 组均显著降低了生物膜中的碳水化合物含量,而与对照 NaF 相比,4%Arg-NaF 处理的生物膜中 eDNA 和蛋白质的浓度更高(p<0.001)。gtfB、SMU.150 和 nlmD 的表达在 4%Arg-NaF 处理的生物膜中显著下调;而 2%Arg-NaF 增强了 arcA 的表达。2%Arg-NaF 和 4%Arg-NaF 均显著增加了 sagP 的表达。

结论

L-精氨酸(2%/4%)的掺入通过释放 Arg 和 F 增强了 5%NaF 涂料的生物膜调节作用。

临床意义

研究结果表明,Arg-F 涂料(2%/4%w/v. Arg)有可能调节高危个体的致龋生物膜。

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