纳米褐凤尾鱼对深层牙本质龋混合菌的抑菌作用

Tamara Yuanita, Shafa Marwa, Moza Paramitha, Arinda Sitania Mustamu
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引用次数: 0

摘要

背景:生物牙素是一种盖髓材料,完善了Ca(OH)2的缺点,但具有较低的透光性和较低的耐洗出性,因此希望有天然成分可以作为盖髓材料。纳米褐凤尾鱼以氟化物的形式具有抗菌含量。它的纳米尺寸也可以更好地促进渗透。目的:分析纳米褐凤尾鱼对深部龋牙本质混合菌的抑菌效果。方法:在体外实验室内进行实验,采用后验对照组设计。将褐凤尾鱼转化成纳米颗粒,然后用肉汤稀释法稀释成几种浓度。采用纳米凤尾鱼与不同浓度细菌直接接触的方法。MIC (Minimum Inhibitory Concentration)和MBC (Minimum Bacterial Concentration)是通过计数在Mueller Hinton培养基上生长的细菌菌落数来计算的。在菌落形成单位(Colony Forming Units, CFU)中手动计算菌落生长。数据分析采用单因素方差分析和Tukey HSD检验。结果:MIC值为0.781%,MBC值为1.56%。阳性对照平均细菌死亡率为0%,浓度为0.781%时平均细菌死亡率为91%,浓度为1.56%时平均细菌死亡率为100%。结果表明,纳米凤尾鱼浓度越大,其抑菌力越强。结论:纳米褐凤尾鱼对牙本质深部混合菌有一定的抑菌作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Antibacterial Power of Nano Brown Anchovy (Stolephorus insularis) Against Mixed Bacteria in Deep Dentin Caries
Background: Biodentin is a pulp capping material that has perfected the shortcomings of Ca(OH)2, but has low radiopacity and lower washing out resistance, so it is hoped that there will be natural ingredients that can be used as pulp capping materials. The nano brown anchovy has antibacterial content in the form of fluoride. Its nano size can also facilitate penetration better. Purpose: Analyzing the antibacterial potency of nano brown anchovy on mixed bacteria in deep carious dentine. Methods: The research was conducted in an experimental laboratory in vitro with a post-test only control group design. Brown anchovy was converted into nanoparticles then diluted into several concentrations using the broth dilution method. Direct contact method was used between nano anchovy and various concentrations of bacteria. The values of MIC (Minimum Inhibitory Concentration) and MBC (Minimum Bacterial Concentration) were obtained by counting the number of bacterial colonies growing on Mueller Hinton Agar media. Colony growth was calculated manually in Colony Forming Units (CFU). Data were analysed by One Way Anova test followed by a Tukey HSD test. Results: The MIC value at a concentration of 0.781% and the MBC value at a concentration of 1.56%. In positive control, there was an average bacterial death of 0%, a concentration of 0.781% had an average bacterial death of 91%, and at a concentration of 1.56% the average bacterial death was 100%. The results showed that the greater the concentration of nano anchovy, the stronger the antibacterial power. Conclusion: There is antibacterial potency in nano brown anchovy against Mixed Bacteria in deep dentin caries lesions.
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