Department of Pediatric Dentistry, Faculty of Dentistry, Cairo University, Egypt.
Department of Dental Public Health, Faculty of Dentistry, Cairo University, Egypt.
Dent Med Probl. 2023 Jul-Sep;60(3):483-488. doi: 10.17219/dmp/152063.
With the recent use and development of nanomaterials, silver nanoparticles (AgNPs) are gaining much attention as a promising antibacterial agent for use in caries prevention.
This study aimed to biosynthesize AgNPs using chamomile extract as a reducing agent and to investigate its inhibitory effect against Streptococcus mutans (S. mutans) dental bacteria.
Chamomile extract was prepared by sonication and added dropwise to silver nitrate (1mM) solution to synthesize AgNPs. Its formation was confirmed spectrophotometrically, and its size was determined. The disc diffusion method was used to test the antibacterial activity of the biosynthesized AgNPs against S. mutans. Also, its minimum inhibitory concentration (MIC) was assessed.
The spectrum of biosynthesized AgNPs showed a maximum peak at 454 nm, and the peak area increased with increasing time. The mean AgNP size was 41 nm. The inhibition zone diameter recorded for AgNPs against S. mutans was 10 mm, while the MIC was 280 μg/ml.
AgNPs biosynthesized using chamomile extract were proven to exert good antibacterial activity against cariogenic S. mutans. Using chamomile extract as a reducing agent can provide a rapid, affordable, and eco-friendly approach for AgNP production, which could be incorporated into various dental vehicles for dental caries prevention.
随着纳米材料的近期应用和发展,银纳米粒子(AgNPs)作为一种有前途的抗菌剂,在预防龋齿方面受到越来越多的关注。
本研究旨在使用洋甘菊提取物作为还原剂来生物合成 AgNPs,并研究其对变形链球菌(S. mutans)口腔细菌的抑制作用。
通过超声处理制备洋甘菊提取物,然后将其逐滴加入硝酸银(1mM)溶液中以合成 AgNPs。通过分光光度法确认其形成,并测定其粒径。采用圆盘扩散法测试生物合成的 AgNPs 对 S. mutans 的抗菌活性。同时,评估其最小抑菌浓度(MIC)。
生物合成的 AgNPs 的光谱在 454nm 处显示出最大峰值,并且随着时间的增加,峰值面积增加。AgNP 的平均粒径为 41nm。AgNPs 对 S. mutans 的抑菌圈直径为 10mm,而 MIC 为 280μg/ml。
使用洋甘菊提取物生物合成的 AgNPs 对致龋 S. mutans 表现出良好的抗菌活性。使用洋甘菊提取物作为还原剂可以提供一种快速、经济实惠且环保的 AgNP 生产方法,可将其纳入各种牙科制剂中用于预防龋齿。