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解析一种新型纳米金义齿及假体树脂的抗生物膜活性

Unraveling the Antibiofilm Activity of a New Nanogold Resin for Dentures and Epithesis.

作者信息

Ivanovic Vera, Popovic Danica, Petrovic Sanja, Rudolf Rebeka, Majerič Peter, Lazarevic Milos, Djordjevic Igor, Lazic Vojkan, Radunovic Milena

机构信息

Laboratory for Microbiology, School of Dental Medicine, University of Belgrade, 11000 Belgrade, Serbia.

Clinic for Prosthodontics, School of Dental Medicine, University of Belgrade, 11000 Belgrade, Serbia.

出版信息

Pharmaceutics. 2022 Jul 21;14(7):1513. doi: 10.3390/pharmaceutics14071513.

Abstract

Dentures and epitheses are mostly made from poly(methyl methacrylate) (PMMA), which does not show antimicrobial properties. They present reservoirs of microorganisms grown in biofilms. The aim of this study is to prepare a PMMA enriched with gold nanoparticles (AuNPs)-PMMA/AuNPs and the examination of its physical, mechanical and antimicrobial properties. The AuNPS were synthetized from HAuCl using the ultrasonic spray pyrolysis method with lyophilization. The PMMA/AuNP samples were compared to PMMA samples. Density was measured by pycnometer. Microhardness was evaluated using the Vickers hardness test. Monomicrobial biofilm formation (, , and ) was measured by colony-forming units (CFUs) and MTT test and visualized by SEM. AuNP release was measured indirectly (the CFUs of the medium around the sample). The density and microhardness of the PMMA/AuNPs were similar to those of the PMMA. CFU and MTT values for the biofilms formed on the PMMA for each of the tested species were higher than those of the biofilms formed on the PMMA/AuNPs. The CFUs of the medium around the sample were similar for both materials. PMMA/AuNPs showed a significant reduction in the monomicrobial biofilms of all tested species. AuNPs are not released from PMMA/AuNPs. Density, indirect measurement of residual monomer and dentures weight were similar between PMMA and PMMA/AuNPs. Microhardness, as a measure of the wear resistance, was also similar between tested discs.

摘要

假牙和义齿大多由聚甲基丙烯酸甲酯(PMMA)制成,其不具有抗菌性能。它们是生物膜中生长的微生物的储存库。本研究的目的是制备富含金纳米颗粒(AuNPs)的PMMA - PMMA/AuNPs,并检测其物理、机械和抗菌性能。使用超声喷雾热解法结合冻干技术从氯金酸合成AuNPs。将PMMA/AuNP样品与PMMA样品进行比较。用比重瓶测量密度。使用维氏硬度测试评估显微硬度。通过菌落形成单位(CFUs)和MTT试验测量单一微生物生物膜形成(,,和),并用扫描电子显微镜(SEM)观察。间接测量AuNP释放(样品周围培养基中的CFUs)。PMMA/AuNPs的密度和显微硬度与PMMA的相似。在每种测试菌种的PMMA上形成的生物膜的CFU和MTT值高于在PMMA/AuNPs上形成的生物膜。两种材料样品周围培养基的CFUs相似。PMMA/AuNPs在所有测试菌种的单一微生物生物膜中显示出显著减少。AuNPs不会从PMMA/AuNPs中释放。PMMA和PMMA/AuNPs之间的密度、残留单体的间接测量和假牙重量相似。作为耐磨性指标的显微硬度在测试圆盘之间也相似。

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