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An Invitro Antifungal Efficacy of Silver Nanoparticles Activated by Diode Laser to Candida albicans

机译:二极管激光激活的银纳米粒子的invitro抗真菌效果与念珠菌念珠菌

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Microbial infectious diseases and increased resistance to antibiotics become urgent problems requiring immediate solutions. One promising alternative is the using of silver nanoparticles. The combination of the microbial inhibition characteristic of silver nanotechnology enhances the activity of antimicrobial effect. This study aims to determine effectiveness of antifungal silver nanoparticles with the activation of the diode laser on Candida albicans. The samples were culture of Candida albicans. Candida albicans cultures were incubated with silver nanoparticles (concentration 10~(-4) M) and treated with various exposure time of diode laser (15, 30, 45, 60, 75, 90)s. The suspension was planted on Sabouraud Dextrone Agar sterile media and incubated for 24 hours at temperature of 37°C. The number of colony-forming units per milliliter (CFU/ml) was determined after incubation. The results were log-transformed and analyzed by analysis of variance (ANOVA). In this analysis, P value <0.05 was considered to indicate a statistically significant difference. The result of this study showed the quantum yield of silver nanoparticles with diode laser 450 nm was 63,61%. Irradiating with diode laser 450 nm for 75 s resulted in the highest decreasing percentage of Candida albicans viability 65,03%. Irradiating with diode laser 450 nm 75 s with silver nanoparticles resulted in the higest decreasing percentage of Candida albicans viability 84,63%. Therefore, silver nanoparticles activated with diode laser irradiation of 450 nm resulted antifungal effect to Candida albicans viability.
机译:微生物传染病和对抗生素的抗性增加成为需要立即解决方案的紧急问题。一个有前途的替代方案是银纳米颗粒的使用。银纳米技术的微生物抑制特性的组合增强了抗微生物作用的活性。本研究旨在确定抗真菌银纳米粒子的有效性随着Diode激光器对念珠菌念珠菌的激活。样品是念珠菌白醛植物的培养。念珠菌与银纳米颗粒(浓度10〜(-4)m)温育,并用各种曝光时间的二极管激光(15,30,45,60,75,90)进行处理。将悬浮液种植在Sabourauct Dextrone琼脂无菌介质上,并在37℃的温度下温育24小时。孵育后测定每毫升(CFU / mL)的菌落形成单位数。通过对方差(ANOVA)分析来对结果进行对数转换和分析。在该分析中,认为P值<0.05表示统计学上显着差异。该研究的结果表明,具有二极管激光器450nm的银纳米粒子的量子产率为63,61%。用二极管激光器450nm照射75秒,导致念珠菌白醛素的百分比降低65,03%。用银纳米颗粒用二极管激光器450nm 75s照射导致念珠菌醛糖苷的最高百分比84,63%。因此,用二极管激光照射激活的银纳米粒子为450nm导致的抗真菌​​效应,对念珠菌的抗念珠菌产生活力。

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