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尖孢镰刀菌辅助绿色合成用于高效抗菌和光催化脱色性能的小尺寸银纳米颗粒。

Fusarium oxysporum assisted green synthesis of small-sized silver nanoparticles for high antibacterial, and photocatalytic decolorization performances.

作者信息

El-Sharkawy Reyad M, Ahmed Inas A, Kharboush Taghrid G

机构信息

Botany and Microbiology Department, Faculty of Science, Benha University, Benha, Egypt.

Department of Medical Biochemistry and Molecular Biology, Faculty of Medicine, Benha University, Benha, Egypt.

出版信息

BMC Microbiol. 2025 Jan 6;25(1):4. doi: 10.1186/s12866-024-03686-7.

Abstract

BACKGROUND

Novel platforms using nanotechnology-based medicines have exponentially increased in our daily lives. The unique characteristics of metal oxide and noble metals nanoparticles make them suitable for different fields including antimicrobial agents, cosmetics, textiles, wound dressings, and anticancer drug carriers.

METHODS

This study focuses on the biosynthesis of small-sized SNPs using exo-metabolites of Fusarium oxysporum via bioprocess optimization using Plackett-Burman (PBD) and central composite designs (CCD) while evaluating their multifaceted bioactivities.

RESULTS

The successful biofabrication of smaller-sized SNPs with an average particle size of ~ 5 nm was achieved upon the bioprocess optimization. The developed SNPs exhibited significant antibacterial activity against multidrug-resistant bacterial pathogens in a concentration- and time-dependent manner. The minimum inhibitory concentrations (MICs) for SNPs were 0.078 µg/ml (Escherichia coli), 0.156 µg/ml (Pseudomonas aeruginosa), and 1.25 µg/ml (Enterococcus faecalis), while the minimum bactericidal concentrations (MBCs) were correspondingly 0.156 µg/ml, 0.312 µg/l, and 1.25 µg/ml. SNPs-treated cells displayed bacteriostatic and bactericidal effects as revealed by time-kill assay and the ultrastructure changes observed in SEM and TEM analyses. The results marked the potent antioxidant activity of SNPs against DPPH, O, HO, and OH-radicals with IC values of 74.3, 96.7, 116.6, and 167.9 µg/ml, respectively. Significantly, the biosynthesized SNPs displayed cytotoxic activity on MCF-7, A549, and HepG-2 cell lines with IC values of 89.4, 121.4, and 138.9 µg/ml, respectively. SNPs exhibited promising photocatalytic efficiency at different concentrations and times compared with dark conditions. The highest decolorization percentage of crystal violet dye was 98.60% after 240 min at 100 µg SNPs concentration.

CONCLUSIONS

The green synthesis of SNPs by F. oxysporum exometabolites is eco-friendly, and inexpensive, with the production of small-size, and greatly stabilized nanoparticles. This study corroborated that SNPs can be highly promising enough to be applied for antibacterial and anticancer control systems, for ameliorating free radical-related disorders, and as a photocatalyst for wastewater treatment.

摘要

背景

基于纳米技术药物的新型平台在我们的日常生活中呈指数级增长。金属氧化物和贵金属纳米颗粒的独特特性使其适用于不同领域,包括抗菌剂、化妆品、纺织品、伤口敷料和抗癌药物载体。

方法

本研究聚焦于利用尖孢镰刀菌的胞外代谢产物通过Plackett-Burman(PBD)和中心复合设计(CCD)进行生物工艺优化来生物合成小尺寸的银纳米颗粒(SNPs),同时评估其多方面的生物活性。

结果

通过生物工艺优化成功生物制造出平均粒径约为5纳米的更小尺寸的SNPs。所制备的SNPs对多重耐药细菌病原体表现出显著的抗菌活性,呈浓度和时间依赖性。SNPs对大肠杆菌的最低抑菌浓度(MICs)为0.078微克/毫升,对铜绿假单胞菌为0.156微克/毫升,对粪肠球菌为1.25微克/毫升,而最低杀菌浓度(MBCs)分别相应为0.156微克/毫升、0.312微克/升和1.25微克/毫升。时间 - 杀菌试验以及扫描电子显微镜(SEM)和透射电子显微镜(TEM)分析中观察到的超微结构变化表明,经SNPs处理的细胞显示出抑菌和杀菌作用。结果表明SNPs对二苯基苦味酰基自由基(DPPH)、超氧阴离子(O)、羟基自由基(HO)和羟自由基(OH)具有强大的抗氧化活性,其半数抑制浓度(IC)值分别为74.3、96.7、116.6和167.9微克/毫升。值得注意的是,生物合成的SNPs对MCF - 7、A549和HepG - 2细胞系具有细胞毒性,IC值分别为89.4、121.4和138.9微克/毫升。与黑暗条件相比,SNPs在不同浓度和时间下表现出有前景的光催化效率。在100微克SNPs浓度下,240分钟后结晶紫染料的最高脱色率为98.60%。

结论

尖孢镰刀菌胞外代谢产物绿色合成SNPs具有生态友好、成本低廉的特点,可生产小尺寸且稳定性极高的纳米颗粒。本研究证实SNPs极具应用前景,可用于抗菌和抗癌控制系统、改善自由基相关疾病,以及作为废水处理的光催化剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b48/11702280/240ecdff879a/12866_2024_3686_Fig1_HTML.jpg

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