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Silver nanoparticle production by the fungus Fusarium oxysporum: nanoparticle characterisation and analysis of antifungal activity against pathogenic yeasts

机译:真菌镰孢(Fusarium oxysporum)生产银纳米颗粒:纳米颗粒表征和对病原酵母的抗真菌活性分析

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摘要

The microbial synthesis of nanoparticles is a green chemistry approach that combines nanotechnology and microbial biotechnology. The aim of this study was to obtain silver nanoparticles (SNPs) using aqueous extract from the filamentous fungus Fusarium oxysporum as an alternative to chemical procedures and to evaluate its antifungal activity. SNPs production increased in a concentration-dependent way up to 1 mM silver nitrate until 30 days of reaction. Monodispersed and spherical SNPs were predominantly produced. After 60 days, it was possible to observe degenerated SNPs with in additional needle morphology. The SNPs showed a high antifungal activity against Candida and Cryptococcus , with minimum inhibitory concentration values ≤ 1.68 µg/mL for both genera. Morphological alterations of Cryptococcus neoformans treated with SNPs were observed such as disruption of the cell wall and cytoplasmic membrane and lost of the cytoplasm content. This work revealed that SNPs can be easily produced by F. oxysporum aqueous extracts and may be a feasible, low-cost, environmentally friendly method for generating stable and uniformly sized SNPs. Finally, we have demonstrated that these SNPs are active against pathogenic fungi, such as Candida and Cryptococcus .
机译:纳米颗粒的微生物合成是结合了纳米技术和微生物生物技术的绿色化学方法。这项研究的目的是使用丝状真菌尖孢镰刀菌(Fusarium oxysporum)的水提取物作为化学方法的替代品来获得银纳米颗粒(SNP),并评估其抗真菌活性。直到反应30天,SNP的产生以浓度依赖的方式增加,直至1 mM硝酸银。主要生产单分散和球形SNP。 60天后,可以观察到变性的SNP以及其他针状形态。 SNPs对念珠菌和隐球菌具有很高的抗真菌活性,两个属的最小抑菌浓度值≤1.68 µg / mL。观察到用SNPs处理的新隐球菌的形态学改变,例如细胞壁和细胞质膜的破坏以及细胞质含量的损失。这项工作表明,S.sNPs可以很容易地由F. oxysporum的水提物生产,并且可能是一种可行的,低成本的,环境友好的方法,用于生成稳定且大小均一的SNPs。最后,我们证明了这些SNP对病原真菌(例如念珠菌和隐球菌)具有活性。

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