研究动态
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利用烟酸新芽孢杆菌 AUMC-B524 的力量进行氧化银纳米颗粒合成:优化、表征和生物活性探索。

Harnessing the power of Neobacillus niacini AUMC-B524 for silver oxide nanoparticle synthesis: optimization, characterization, and bioactivity exploration.

发表日期:2024 Aug 06
作者: Shimaa H El-Sapagh, Nessma A El-Zawawy, Mostafa E Elshobary, Mohammed Alquraishi, Hossain M Zabed, Hoda S Nouh
来源: Microbial Cell Factories

摘要:

生物技术提供了一种经济高效的方法来生产纳米材料,例如氧化银纳米粒子(Ag2ONP),这些纳米材料已成为具有多种应用的多功能实体。本研究探讨了内生细菌生物合成Ag2ONPs的能力。从Lycium shawii Roem中分离得到一株新的内生菌株Neobacillus niacini AUMC-B524。
Biotechnology provides a cost-effective way to produce nanomaterials such as silver oxide nanoparticles (Ag2ONPs), which have emerged as versatile entities with diverse applications. This study investigated the ability of endophytic bacteria to biosynthesize Ag2ONPs.A novel endophytic bacterial strain, Neobacillus niacini AUMC-B524, was isolated from Lycium shawii Roem. & Schult leaves and used to synthesize Ag2ONPS extracellularly. Plackett-Burman design and response surface approach was carried out to optimize the biosynthesis of Ag2ONPs (Bio-Ag2ONPs). Comprehensive characterization techniques, including UV-vis spectral analysis, Fourier transform infrared spectroscopy, transmission electron microscopy, X-ray diffraction, dynamic light scattering analysis, Raman microscopy, and energy dispersive X-ray analysis, confirmed the precise composition of the Ag2ONPS. Bio-Ag2ONPs were effective against multidrug-resistant wound pathogens, with minimum inhibitory concentrations (1-25 µg mL-1). Notably, Bio-Ag2ONPs demonstrated no cytotoxic effects on human skin fibroblasts (HSF) in vitro, while effectively suppressing the proliferation of human epidermoid skin carcinoma (A-431) cells, inducing apoptosis and modulating the key apoptotic genes including Bcl-2 associated X protein (Bax), B-cell lymphoma 2 (Bcl-2), Caspase-3 (Cas-3), and guardian of the genome (P53).These findings highlight the therapeutic potential of Bio-Ag2ONPs synthesized by endophytic N. niacini AUMC-B524, underscoring their antibacterial efficacy, anticancer activity, and biocompatibility, paving the way for novel therapeutic strategies.© 2024. The Author(s).