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Biomimetic synthesis of AgNPs from Penicillium chrysogenum strain FGCC/BLS1 by optimising physico-cultural conditions and assessment of their antimicrobial potential

机译:通过优化生理培养条件并评估其抗菌潜力,从拟青霉FGCC / BLS1菌株仿生合成AgNPs

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摘要

Biomimetic synthesis of metal nanoparticles (NPs) is safe and eco-friendly; therefore, find diverse applications. Considering this, the soil fungi strain Fungal germplasm collection centre/ BLS1 was isolated, characterized and explored to synthesize extracellular silver NPs (AgNPs) under optimised conditions. The synthesis of AgNPs was investigated using ultraviolet (UV)-visible spectroscopy, Fourier-transform infra-red spectroscopy (FTIR), transmission electron microscope (TEM) and dynamic light scattering (DLS) analysis. Process optimisation exhibited AgNPs synthesis within 8 h using 2 mM AgNO3 at pH 11 and temperature 70°C. TEM analysis revealed polydispersed ellipsoidal shaped AgNPs with average particle size 96.8 nm as measured by DLS. AgNPs showed negative zeta potential that confers surface stability in solution. FTIR spectra confirmed the presence of protein bound to AgNPs. Antibacterial activity against and by the AgNPs (100 ppm) was demonstrated by counting colony forming unit , disc diffusion, and growth kinetics assay. Additionally radial assay revealed antifungal activity of AgNPs (100 ppm) against phytopathogenic fungi Microbial type culture collection 8785. Furthermore, AgNPs (100 ppm) did not show any cytotoxic effects on human Red blood cells. Therefore, this novel fungal strain can be utilised for biofabrication of AgNPs under optimised conditions and have shown strong antimicrobial property.
机译:金属纳米颗粒(NPs)的仿生合成是安全且环保的;因此,找到各种应用。考虑到这一点,分离,表征和探索了土壤真​​菌菌株真菌种质收集中心/ BLS1,以在优化条件下合成细胞外银NP(AgNP)。 AgNPs的合成进行了研究使用紫外(UV)可见光谱,傅立叶变换红外光谱(FTIR),透射电子显微镜(TEM)和动态光散射(DLS)分析。工艺优化显示,使用2 mM AgNO3在pH 11和温度70°C下,在8小时内合成了AgNPs。 TEM分析显示,通过DLS测得的平均粒径为96.8nm的多分散椭圆形AgNPs。 AgNPs显示出负的Zeta电位,赋予溶液表面稳定性。 FTIR光谱证实了与AgNPs结合的蛋白质的存在。通过计数菌落形成单位,椎间盘扩散和生长动力学试验证明了对AgNPs(100 ppm)的抗菌活性。另外,放射分析显示AgNPs(100 ppm)对植物病原真菌的微生物类型培养物集合8785的抗真菌活性。此外,AgNPs(100 ppm)对人红细胞没有任何细胞毒性作用。因此,该新型真菌菌株可用于在优化条件下进行AgNPs的生物制造,并显示出强大的抗菌性能。

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