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Antimicrobial and Synergistic Effects of Silver Nanoparticles Synthesized Using Soil Fungi of High Altitudes of Eastern Himalaya

机译:喜马拉雅山东部高海拔土壤真菌合成的银纳米颗粒的抗菌和协同效应

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摘要

Fifty three fungi isolated from soils of different microhabitats of eastern Himalayan range (3,400~3,600 msl) were screened for mycosynthesis of silver nanaoparticles (AgNPs) and their efficacy as antimicrobials were assessed in combination with commonly used antibiotics. Three isolates Aspergillus terreus SP5, Paecilomyces lilacinus SF1 and Fusarium sp. MP5 identified based on morphological and 18S rRNA gene sequences were found to synthesize AgNPs. These nanoparticles were characterized by visual observation followed by UV-visible spectrophotometric analysis. The AgNPs synthesized by Aspergillus terreus SP5, Paecilomyces lilacinus SF1 and Fusarium sp. MP5 showed absorbance maxima at 412, 419, and 421 nm respectively in the visible region. Transmission electron microscopy micrograph showed formation of spherical AgNPs of 5~50 nm size. The antimicrobial activity of the mycosynthesized nanoparticles were investigated alone and in combination with commonly used antibiotics for analysis of growth inhibition zone against test organisms, namely, Staphylococcus aureus MTCC96, Streptococcus pyogenes MTCC1925, Salmonella enterica MTCC735 and Enterococcus faecalis MTCC2729. The mycosynthesized nanoparticles showed potent antibacterial activity and interestingly their syngergistic effect with erythromycin, methicillin, chloramphenicol and ciprofloxacin was significantly higher as compared to inhibitions by AgNPs alone. The present study indicates that silver nanoparticles synthesized using soil borne indigenous fungus of high altitudes show considerable antimicrobial activity, deserving further investigation for potential applications.
机译:从喜马拉雅东部范围(3,400〜3,600 msl)的不同微生境的土壤中分离出的53种真菌被筛选出纳米银(AgNPs)的真菌合成,并结合常用抗生素评估了其作为抗菌剂的功效。三种分离物为曲霉曲霉SP5,淡紫色拟青霉SF1和镰刀菌sp。发现基于形态学和18S rRNA基因序列鉴定的MP5可以合成AgNP。这些纳米颗粒的特征在于目视观察,然后进行紫外可见分光光度法分析。由土曲霉SP5,淡淡拟青霉SF1和镰刀菌sp。合成的AgNPs。 MP5在可见光区域分别在412、419和421 nm处显示最大吸光度。透射电镜显微照片显示形成了5〜50 nm大小的球形AgNPs。单独研究了真菌合成的纳米颗粒的抗菌活性,并与常用抗生素组合使用,以分析针对测试生物的生长抑制区,即金黄色葡萄球菌MTCC96,化脓性链球菌MTCC1925,肠炎沙门氏菌MTCC735和粪肠球菌MTCC2729。真菌合成的纳米颗粒显示出有效的抗菌活性,有趣的是,它们与红霉素,甲氧西林,氯霉素和环丙沙星的协同作用明显高于单独使用AgNPs的抑制作用。本研究表明,使用土壤载高海拔土生真菌合成的银纳米粒子具有相当大的抗菌活性,值得进一步研究以进行潜在的应用。

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