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巴西莓(Euterpe oleracea Mart.)绿色合成银纳米粒子:抗菌功效和生态毒理学评估。

Açaí (Euterpe oleracea Mart.) green synthesis of silver nanoparticles: antimicrobial efficacy and ecotoxicological assessment.

机构信息

Physiological Sciences Post Graduation Program, Institute of Biological Sciences (ICB), Federal University of Rio Grande (FURG), Rio Grande, RS, Brazil.

Technological and Environmental Chemistry Post Graduation Program. School of Chemistry and Food (EQA), Federal University of Rio Grande (FURG), Rio Grande, RS, Brazil.

出版信息

Environ Sci Pollut Res Int. 2024 Feb;31(8):12005-12018. doi: 10.1007/s11356-024-31949-3. Epub 2024 Jan 16.

Abstract

The synthesis of silver nanoparticles (AgNPs) is usually based on expensive methods that use or generate chemicals that can negatively impact the environment. Our study presents a simple one-step synthesis process for obtaining AgNP using an aqueous extract of Amazonian fruit açai (Euterpe oleracea Mart.) as the reducing and stabilizing agents. The bio-synthesized AgNP (bio-AgNP) were comprehensively characterized by diverse techniques, and as a result, 20-nm spherical particles (transmission electron microscopy) were obtained. X-ray diffraction analysis (XRD) confirmed the presence of crystalline AgNP, and Fourier-transform infrared spectroscopy (FT-IR) suggested that polyphenolic compounds of açaí were present on the surface. The bio-AgNP showed antimicrobial activity against Staphylococcus aureus, Pseudomonas aeruginosa, and Acinetobacter baumannii. In Caenorhabditis elegans exposed to 10 μg/L bio-AgNP for 96 h, there were no significant effects on growth, reproduction, or reactive oxygen species (ROS) concentration; however, there was an increase in superoxide dismutase (SOD) and glutathione-S-transferase (GST) enzymatic activity. In contrast, when worms were exposed to chemically synthesized AgNP (PVP-AgNP), an increase in ROS, SOD, and GST activity and a reduction in oxidative stress resistance were observed. In conclusion, our study not only showcased the potential of açaí in the simple and rapid production of AgNP but also highlighted the broad-spectrum antimicrobial activity of the synthesized nanoparticles using our protocol. Moreover, our findings revealed that these AgNPs exhibited reduced toxicity to C. elegans at environmentally realistic concentrations compared with PVP-AgNP.

摘要

银纳米粒子(AgNP)的合成通常基于昂贵的方法,这些方法使用或生成可能对环境产生负面影响的化学物质。我们的研究提出了一种简单的一步法,使用亚马逊水果黑果腺肋花楸(Euterpe oleracea Mart.)的水提物作为还原剂和稳定剂来获得 AgNP。生物合成的 AgNP(bio-AgNP)通过多种技术进行了全面表征,结果得到了 20nm 的球形颗粒(透射电子显微镜)。X 射线衍射分析(XRD)证实了结晶 AgNP 的存在,傅里叶变换红外光谱(FT-IR)表明黑果腺肋花楸中的多酚化合物存在于表面。bio-AgNP 对金黄色葡萄球菌、铜绿假单胞菌和鲍曼不动杆菌表现出抗菌活性。在暴露于 10μg/L bio-AgNP 96 小时的秀丽隐杆线虫中,生长、繁殖或活性氧(ROS)浓度没有显著影响;然而,超氧化物歧化酶(SOD)和谷胱甘肽-S-转移酶(GST)的酶活性增加。相比之下,当蠕虫暴露于化学合成的 AgNP(PVP-AgNP)时,观察到 ROS、SOD 和 GST 活性增加以及抗氧化应激能力降低。总之,我们的研究不仅展示了黑果腺肋花楸在简单快速生产 AgNP 方面的潜力,还强调了使用我们的方案合成的纳米粒子具有广谱抗菌活性。此外,我们的研究结果表明,与 PVP-AgNP 相比,这些 AgNPs 在环境现实浓度下对秀丽隐杆线虫的毒性降低。

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