利用真菌提取物绿色合成银纳米粒子并对其进行综合表征,使其应用于生物领域

Nithya K., A. M. Imthiyas, S. Jagadeeswari, P. Vidya
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引用次数: 0

摘要

本研究的重点是银纳米粒子(AgNPs)的生产、表征和在生物医学研究中的应用。研究采用了一种生态友好的细胞外生物合成方法,利用真菌(Henna)的水性叶提取物作为还原剂。利用紫外可见光谱对合成的 AgNPs 进行了表征,发现其在 424 纳米处有吸收峰。还进行了傅立叶变换红外光谱分析,以确定纳米颗粒中存在的化学基团。TEM 和 SEM 分析表明,AgNPs 呈球形,大小在 10 到 50 nm 之间。绿色合成的 AgNPs 可抑制金黄色葡萄球菌、克雷伯氏菌、沙门氏菌和大肠杆菌。青霉、黑曲霉、黄曲霉和镰刀菌具有抗真菌活性,并形成了抑制区。此外,还发现最低抑菌浓度(MIC)和最低杀菌浓度(MBC)值为 75 毫克/毫升(大肠杆菌 ATCC25922),同一菌株的 MIC 值为 50 毫克/毫升。这些纳米粒子对 A549 肺癌细胞具有显著的抗炎活性和剂量依赖性细胞毒性。合成的纳米颗粒还具有很强的抗氧化活性。研究结果表明,植物可作为生产银纳米粒子的有效资源。这种粒子在生物医学研究和纳米技术等众多领域都有潜在的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Green Synthesis and Comprehensive Characterization of Silver Nanoparticles Using Lawsonia inermis Extract for Biological Applications
This research focuses on the production, characterization, and application of silver nanoparticles (AgNPs) for biomedical research. An eco-friendly extracellular biosynthetic method was employed, utilizing aqueous leaf extracts of Lawsonia inermis (Henna) as reducing agents. The synthesized AgNPs were characterized using UV-Vis spectroscopy, showing an absorption peak at 424 nm. FT-IR analysis was conducted to identify chemical groups present in nanoparticles. TEM and SEM analyses revealed that AgNPs were spherical and ranged in size from 10 to 50 nm. Staphylococcus aureus, Klebsiella, Salmonella, and Escherichia coli were inhibited by the green-synthesised AgNPs. Penicillium, Aspergillus niger, Aspergillus flavus, and Fusarium showed antifungal activity, forming zones of inhibition. Furthermore, the Minimum Inhibitory Concentration (MIC) and Minimum Bactericidal Concentration (MBC) values were found to be 75 mg/ml (Escherichia coli ATCC25922) and the MIC value was 50 mg/ml for the same strain. These nanoparticles demonstrated significant anti-inflammatory activity and dose-dependent cytotoxicity against A549 lung cancer cells. As a result of the synthesized nanoparticles, strong antioxidant activity was observed. The results suggest that plants can be effectively used as a resource for the production of silver nanoparticles. Such particles have potential applications in numerous fields such as biomedical research and nanotechnology.
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