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生物合成银纳米粒子、阿莫西林和玻璃离子水门汀对抗的抗菌活性。

Antimicrobial activity of biosynthesized silver nanoparticles, amoxicillin, and glass-ionomer cement againstand.

机构信息

Dental Biomaterials, Faculty of Dentistry, Taif University, Saudi Arabia.

Dental Biomaterials, Faculty of Dentistry, Mansoura University, Egypt.

出版信息

Nanotechnology. 2021 Mar 3;32(21). doi: 10.1088/1361-6528/abe577.

Abstract

. The development of dental caries is associated with various microorganisms and secondary caries formation is the main cause of restorations failure. The advice for restorative dental materials that have antimicrobial properties has stimulated the introduction of materials containing different antibacterial agents.. The present study has been designed to synthesize silver nanoparticles (AgNPs) and incorporate AgNPs and amoxicillin into glass ionomer cement (GIC) to synergize its effect on oral microbes. The effect of the added antimicrobial agents on compressive strength (CS) of GIC was also evaluated.. Biosynthesis of AgNPs was done usingextract and AgNPs were characterized. A total of 120 disc-shaped specimens were prepared and classified into 4 main groups where Group A includes conventional GIC, Groups B and C include GIC with AgNPs or amoxicillin, respectively, while Group D included GIC with both AgNPs and amoxicillin. Each group was tested for the antimicrobial activity against both() and(). The distribution of biofilm was examined via a scanning electron microscope. The CS of the tested material was measured using a Material Test System.. The UV-visible spectrum showed a peak of 429 nm. Transmission electron microscopy, x-ray diffraction pattern and Fourier transform infrared analysis confirmed the formation of AgNPs with spherical to oblong polydispersed particles of diameter in the range of 13.5-25.8 nm. The maximum inhibitory zone was recorded for group D against both tested bacteria with a mean of 29 mm at first 24 h period to 15 mm at three weeks and showed antimicrobial rate 92.2% and 92.56%, against both strains, respectively. Additionally, group D disintegrated the structure ofbiofilm and even kill bacteria in the biofilms. The addition of AgNPs and amoxicillin caused an insignificant effect on CS of GIC.TheAgNPs showed a synergistic effect in combination with amoxicillin and GIC dental restorative material against studied microorganisms. The agents can be safely added with minimal effect on the mechanical properties of the original cement.

摘要

. 龋齿的发展与各种微生物有关,继发龋的形成是修复失败的主要原因。具有抗菌特性的修复牙科材料的建议刺激了含有不同抗菌剂的材料的引入。. 本研究旨在合成银纳米颗粒(AgNPs)并将 AgNPs 和阿莫西林掺入玻璃离子水门汀(GIC)中,以协同其对口腔微生物的作用。还评估了添加抗菌剂对 GIC 抗压强度(CS)的影响。. 使用提取物合成 AgNPs,并对 AgNPs 进行了表征。共制备了 120 个圆盘形试件,并分为 4 个主要组,其中 A 组包括常规 GIC,B 组和 C 组分别包括含有 AgNPs 或阿莫西林的 GIC,而 D 组包括含有 AgNPs 和阿莫西林的 GIC。每组均针对()和()进行了抗菌活性测试。通过扫描电子显微镜检查生物膜的分布。使用材料测试系统测量测试材料的 CS。. UV-可见光谱显示出 429nm 的峰值。透射电子显微镜、X 射线衍射图案和傅里叶变换红外分析证实了 AgNPs 的形成,其具有直径在 13.5-25.8nm 范围内的球形至长形多分散颗粒。在最初的 24 小时内,D 组对两种测试细菌的最大抑菌圈记录为 29mm,在三周时为 15mm,对两种菌株的抗菌率分别为 92.2%和 92.56%。此外,D 组破坏了生物膜的结构,甚至杀死了生物膜中的细菌。AgNPs 和阿莫西林的添加对 GIC 的 CS 没有显著影响。AgNPs 与阿莫西林和 GIC 牙科修复材料联合使用对研究中的微生物具有协同作用。这些试剂可以安全添加,对原始水泥的机械性能影响最小。

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