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Ag 纳米颗粒和纳米线抗. 的抗真菌机制比较研究及转录组学分析

Comparative Study and Transcriptomic Analysis on the Antifungal Mechanism of Ag Nanoparticles and Nanowires Against .

机构信息

Chinese PLA Medical School, Beijing, 100072, People's Republic of China.

Department of Dermatology, The Seventh Medical Center of PLA General Hospital, Beijing, 100072, People's Republic of China.

出版信息

Int J Nanomedicine. 2024 Nov 13;19:11789-11804. doi: 10.2147/IJN.S474299. eCollection 2024.

Abstract

BACKGROUND

Silver nanomaterials have been widely proven to have antifungal effects against . However, the antifungal mechanism of silver nanomaterials with different morphologies still needs to be explored.

METHODS

Herein, the antifungal effect of silver nanomaterials against fungus was comparative investigated via silver nanowires and silver nanoparticles with a similar size (30 nm).

RESULTS

The optimal antifungal concentration of silver nanowires is 6.24 μg/mL, meanwhile the antifungal concentration of silver nanoparticles is 100 μg/mL. The silver nanowires are significantly superior to the silver nanoparticles. SEM and TEM results indicated that both silver nanoparticles and silver nanowires showed significant morphological changes in the mycelium of the strain, compared with the control. The lower MFC value of silver nanowires indicates good sterilization effect and suitability for eradication treatment, which is slower than that of silver nanoparticles. Moreover, we also investigated the toxicological effects of silver nanoparticles and silver nanowires.

CONCLUSION

We comparative studied and transcriptomic analyzed the antifungal mechanism of Ag nanoparticles and nanowires against . The antifungal effects of silver nanowires were better than the silver nanoparticles, especially in the metabolic processes and oxidative phosphorylation. RNA sequencing results indicated that 15 key targets were selected for experimental verification to interpret the potential antifungal mechanism of Ag nanomaterials against fungus. This work proves that silver nanomaterials with different morphologies have potential applications in fungus therapy such as .

摘要

背景

银纳米材料已被广泛证明对具有抗真菌作用。然而,不同形态的银纳米材料的抗真菌机制仍需进一步探索。

方法

本文通过具有相似尺寸(30nm)的银纳米线和银纳米粒子对比研究了银纳米材料对真菌的抗真菌作用。

结果

银纳米线的最佳抗真菌浓度为 6.24μg/mL,而银纳米粒子的抗真菌浓度为 100μg/mL。银纳米线明显优于银纳米粒子。SEM 和 TEM 结果表明,与对照相比,银纳米粒子和银纳米线都使菌株的菌丝在形态上发生了显著变化。银纳米线较低的 MFC 值表明其具有良好的杀菌效果和适合根除治疗的特性,其杀菌速度比银纳米粒子慢。此外,我们还研究了银纳米粒子和银纳米线的毒理学效应。

结论

我们对比研究并转录组分析了 Ag 纳米粒子和纳米线对的抗真菌机制。银纳米线的抗真菌效果优于银纳米粒子,特别是在代谢过程和氧化磷酸化中。RNA 测序结果表明,选择了 15 个关键靶标进行实验验证,以解释 Ag 纳米材料对真菌的潜在抗真菌机制。这项工作证明了不同形态的银纳米材料在真菌治疗如 等方面具有潜在的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5548/11571931/fff2779af2ac/IJN-19-11789-g0001.jpg

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