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首页> 外文期刊>Biomedical Journal >In vitro evaluation of the antimicrobial activity of nanosilver-mineral trioxide aggregate against frequent anaerobic oral pathogens by a membrane-enclosed immersion test
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In vitro evaluation of the antimicrobial activity of nanosilver-mineral trioxide aggregate against frequent anaerobic oral pathogens by a membrane-enclosed immersion test

机译:通过膜封闭式浸渍试验对粉末矿物三氧化锆三氧化锆骨料常见厌氧口服病原体的体外评价

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Background: Nanoparticles of silver (NanoAg) have been shown to control the growth of bacteria, but application of NanoAg in endodontics has not been evaluated. This in vitro study evaluates the antimicrobial activity of NanoAg to enhance the inhibitory effects of mineral trioxide aggregate (MTA). Methods: The antibacterial activities of NanoAg and NanoAg-MTA against four types of anaerobic pathogens were tested in vitro using (1) agar diffusion test (ADT) and (2) a newly devised membrane-enclosed immersion test (MEIT). Results: Both NanoAg and NanoAg-MTA inhibited the growth of all four test bacteria at 25 ppm concentration. MEIT analysis consistently showed that NanoAg enhanced the antimicrobial activity of MTA significantly, and the bacterial susceptibility to lower concentrations of NanoAg varied depending on the type of bacteria. Overall, NanoAg-MTA showed significant inhibitory effect which was time and dose dependent. Conclusions: Our data support that NanoAg can serve as an excellent MTA additive against anaerobic endodontic-periodontal pathogens with clinical applications for infection control in endodontics.
机译:背景技术已被证明银(纳米)的纳米粒子来控制细菌的生长,但尚未评估纳米疙瘩的应用。这种体外研究评估纳米抗菌活性以增强矿物三氧化物聚集体(MTA)的抑制作用。方法:使用(1)琼脂扩散试验(ADT)和(2)进行新设计的膜封闭试验(2)在体外测试纳米抗体和纳米-MTA对四种类型的厌氧病原体的抗菌活性。结果:纳米铝和纳米菌均以25ppm浓度抑制所有四种试验细菌的生长。 Meit分析一致地表明,纳米显着增强了MTA的抗微生物活性,并且根据细菌的类型,对较低浓度的纳米颗粒的细菌易感性变化。总体而言,纳米-MTA显示出显着的抑制作用,这是时间和剂量依赖性的。结论:我们的数据支持该纳米铝可以作为具有抗厌氧牙髓牙周病原体的优异的MTA添加剂,具有临床应用的临床应用。

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