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The synthesis of nano silver-graphene oxide system and its efficacy against endodontic biofilms using a novel tooth model

机译:新型牙齿模型合成纳米银-氧化石墨烯体系及其对牙髓生物膜的功效

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Objective. The deleterious caustic effects of sodium hypochlorite (NaOCl) as a root canal irrigant makes it imperative that alternative methods are developed for root canal disinfection. The purpose of this study was to examine the antimicrobial efficacy of silver nanoparticles (AgNPs) synthesized on an aqueous graphene oxide (GO) matrix (Ag-GO), with different irrigant delivery methods to enhance the disinfection regimen, using a novel ex vivo infected tooth model.Methods. AgNPs were prepared by reducing AgNO3 with 0.01 M NaBH4 in presence of GO. Elemental analysis was performed with scanning electron microscopy/energy dispersive X-ray spectroscopy (SEM/EDS) and scanning transmission electron microscopy (STEM) was used for size and morphology analysis of GO and Ag-GO. Nutrient stressed, multi-species biofilms were grown in prepared root canals of single-rooted teeth. The irrigants used were sterile saline, 1% and 2.5% NaOCl, 2% chlorhexidine gluconate (CHX), 17% EDTA and an aqueous suspension of 0.25% Ag-GO. The antimicrobial efficacy of the irrigants were performed with paper point sampling and measurement of microbial counts. The biofilm disruption in dentine tubule surfaces was analysed with confocal laser scanning microscopy (CLSM). The acquisition of total biovolume (mu m(3)/mu m(2)) and biofilm viability was performed using software BioImage_L. Two-way analysis of variance (ANOVA) with post hoc Tukey tests was used for data analysis with level of statistical significance set at P < 0.05.Results. SEM/EDS analysis confirmed impregnation of Ag within the GO matrix. TEM images showed polygonal GO sheets and spherical AgNPs of diameter 20-50 nm, forming a network on the surface of GO sheets. The use of ultrasonic activation enhanced the efficacy of Ag-GO compared to 1% NaOCl, 2% CHX, 17% EDTA and sterile saline (P < 0.05). The microbial killing efficacy of 2.5% NaOCl was superior compared to the experimental groups. The maximum biofilm disruption, in dentine tubule surfaces, was achieved by 2.5% NaOCl, however Ag-GO caused a significant reduction of total biovolumes compared to the rest of the experimental groups (P < 0.05%).Significance. The successful documentation of the microbial killing and biofilm disruption capacity of Ag-GO is a promising step forward to explore its unique properties in clinical applications and biomaterials in dentistry. (C) 2019 The Academy of Dental Materials. Published by Elsevier Inc. All rights reserved.
机译:目的。次氯酸钠(NaOCl)作为根管冲洗液的有害腐蚀性,因此必须开发出替代方法来消毒根管。这项研究的目的是使用一种新型的离体感染方法,研究在水性氧化石墨烯(GO)基质(Ag-GO)上合成的银纳米颗粒(AgNPs)的抗菌效果,并采用不同的冲洗剂递送方法来增强消毒方案。牙齿模型。方法。通过在GO存在下用0.01 M NaBH4还原AgNO3来制备AgNP。用扫描电子显微镜/能量色散X射线光谱法(SEM / EDS)进行元素分析,并将扫描透射电子显微镜(STEM)用于GO和Ag-GO的尺寸和形态分析。在准备好的单根牙齿的根管中生长着营养丰富的多种生物膜。使用的冲洗剂是无菌盐水,1%和2.5%NaOCl,2%葡萄糖酸洗必太(CHX),17%EDTA和0.25%Ag-GO的水悬浮液。通过纸质点取样和微生物计数的测量来执行冲洗剂的抗微生物功效。用共聚焦激光扫描显微镜(CLSM)分析牙本质小管表面的生物膜破坏。使用软件BioImage_L进行总生物量(μm(3)/μm(2))和生物膜生存力的获取。采用事后Tukey检验进行方差分析(ANOVA)进行数据分析,统计显着性水平设置为P <0.05。 SEM / EDS分析证实了GO基质中Ag的浸渍。 TEM图像显示多边形的GO片和直径20-50 nm的球形AgNP,在GO片的表面形成网络。与1%NaOCl,2%CHX,17%EDTA和无菌盐水相比,超声激活的使用增强了Ag-GO的功效(P <0.05)。与实验组相比,2.5%NaOCl的杀微生物效力更高。牙本质小管表面最大的生物膜破坏是通过2.5%NaOCl达到的,但是与其他实验组相比,Ag-GO导致总生物量显着减少(P <0.05%)。 Ag-GO微生物杀灭和生物膜破坏能力的成功记录是探索其在临床应用和牙科生物材料中独特性能的有前途的一步。 (C)2019牙科材料学院。由Elsevier Inc.出版。保留所有权利。

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