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内生菌介导的银纳米颗粒生物合成及其抗菌和光催化活性。

Endophytic mediated biosynthesis of silver nanoparticles and their antimicrobial and photocatalytic activities.

作者信息

Saied Ebrahim, Abdel-Maksoud Mostafa A, Alfuraydi Akram A, Kiani Bushra Hafeez, Bassyouni Mohamed, Al-Qabandi Osama A, Bougafa Fathia H E, Badawy Mona Shaban E M, Hashem Amr H

机构信息

Botany and Microbiology Department, Faculty of Science, Al-Azhar University, Nasr City, Egypt.

Department of Botany and Microbiology, College of Science, King Saud University, Riyadh, Saudi Arabia.

出版信息

Front Microbiol. 2024 Mar 12;15:1345423. doi: 10.3389/fmicb.2024.1345423. eCollection 2024.

Abstract

In the current study, endophytic was used for the biosynthesis of silver nanoparticles (Ag-NPs) for the first time. The characterizations were performed using X ray diffraction (XRD), Transmission electron microscopy (TEM), Scanning electron microscopy with energy dispersive X-ray spectroscopy (SEM-EDX), Dynamic light scattering (DLS), Fourier transform infrared spectroscopy (FT-IR), and UV-Vis spectroscopy. The obtained results demonstrated the successful formation of crystalline, spherical Ag-NPs with particle diameters ranging from 16 to 31 nm. The FT-IR studied and displayed the various functional groups involved, which played a role in capping and reducing agents for Ag-NPs production. The SEM-EDX revealed that the main constituent of the AS-formed sample was primarily Ag, with a weight percentage of 64.2%. The mycosynthesized Ag-NPs were assessed for antimicrobial as well as photocatalytic activities. The antimicrobial results indicated that the synthesized Ag-NPs possess notable antibacterial efficacy against , with minimum inhibitory concentrations (MICs) of Ag-NPs ranging from 62.5 to 250 μg/mL. Moreover, the biosynthesized Ag-NPs demonstrated weak antifungal activity against and , with MICs of 500 and 1,000 μg/mL, respectively. In addition, the mycosynthesized Ag-NPs exhibited photocatalytic activity toward acid black 2 (nigrosine) dye under both light and dark stimulation. Notably, After 300 min exposure to light, the nigrosine dye was degraded by 93%. In contrast, 51% degradation was observed after 300 min in darkness. In conclusion, Ag-NPs were successfully biosynthesized using endophytic and also exhibited antimicrobial and photocatalytic activities that can be used in environmental applications.

摘要

在当前研究中,首次使用内生菌进行银纳米颗粒(Ag-NPs)的生物合成。使用X射线衍射(XRD)、透射电子显微镜(TEM)、带能谱X射线光谱的扫描电子显微镜(SEM-EDX)、动态光散射(DLS)、傅里叶变换红外光谱(FT-IR)和紫外可见光谱进行表征。所得结果表明成功形成了粒径范围为16至31nm的结晶球形Ag-NPs。FT-IR研究并展示了所涉及的各种官能团,这些官能团在Ag-NPs生产的封端和还原剂中起作用。SEM-EDX显示,所形成的AS样品的主要成分主要是Ag,重量百分比为64.2%。对真菌合成的Ag-NPs进行了抗菌和光催化活性评估。抗菌结果表明,合成的Ag-NPs对[具体菌种未给出]具有显著的抗菌功效,Ag-NPs的最低抑菌浓度(MICs)范围为62.5至250μg/mL。此外,生物合成的Ag-NPs对[具体菌种未给出]和[具体菌种未给出]表现出较弱的抗真菌活性,MICs分别为500和1000μg/mL。此外,真菌合成的Ag-NPs在光照和黑暗刺激下均对酸性黑2(尼格罗辛)染料表现出光催化活性。值得注意的是,在光照下暴露300分钟后,尼格罗辛染料降解了93%。相比之下,在黑暗中300分钟后观察到51%的降解。总之,使用内生菌成功生物合成了Ag-NPs,并且还表现出可用于环境应用的抗菌和光催化活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b0b7/10964773/b740ee0b3f52/fmicb-15-1345423-g001.jpg

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