Antifungal, antibacterial and antioxidant activity of Pinus roxburghii mediated green synthesized zinc and gadolinium doped manganese oxide nanoparticles

Meena Devi , Sheetal Sharma , Pankaj Kumar , Nikesh Thakur , Gulshan Kumar , Manu Vineet Sharma , Arti Jamwal Sharma , Kuldeep Kumar , Arvind Sharma , Kamal Jeet , Naveen Thakur
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Abstract

The exploration into the synthesis and characterization of manganese oxide nanoparticles (MO NPs) has garnered considerable attention, driven by their potential applications across various fields, particularly in medicine and biotechnology. This study focuses on investigating the diverse biological functions of Zinc doped (Zn)-MO and Gadolinium doped (Gd)-MO NPs, including their antifungal, antibacterial, and antioxidant properties. The NPs were synthesized using a sustainable green approach incorporating phytochemicals sourced from Pinus roxburghii. XRD confirmed tetragonal structure for both Zn-CuO and Gd-CuO NPs. Examination TEM and SEM-EDS revealed spheroidal NPs with diameters ranging from 8 to 12 nm. Evaluation of antifungal activity exhibited promising outcomes, indicating the capability of both Zn-MO and Gd-MO NPs to hinder fungal growth, suggesting their potential as antifungal agents. Similarly, the antibacterial effectiveness of these NPs was demonstrated by their ability to impede bacterial growth, highlighting their potential in addressing bacterial infections and potentially combating antibiotic resistance. Furthermore, the antioxidant activity of Zn-MO and Gd-MO NPs was assessed, revealing their capacity to scavenge free radicals and alleviate oxidative stress. In summary, the results emphasize the significant biological activities of Zn-MO and Gd-MO NPs, positioning them as promising candidates for further exploration and development in biomedical and pharmaceutical research.
松柏介导的绿色合成锌和掺杂钆的氧化锰纳米粒子的抗真菌、抗细菌和抗氧化活性
由于氧化锰纳米粒子(MO NPs)在各个领域,特别是医学和生物技术领域的潜在应用,对其合成和表征的探索引起了广泛关注。本研究的重点是研究掺杂锌(Zn)-MO 和掺杂钆(Gd)-MO NPs 的多种生物功能,包括其抗真菌、抗细菌和抗氧化特性。这些 NPs 采用可持续的绿色方法合成,并加入了从罗汉松中提取的植物化学物质。XRD 证实 Zn-CuO 和 Gd-CuO NPs 均为四方结构。TEM 和 SEM-EDS 检测显示,这些 NPs 呈球形,直径在 8 纳米到 12 纳米之间。抗真菌活性评估结果表明,Zn-MO 和 Gd-MO NPs 都能阻止真菌生长,具有抗真菌的潜力。同样,这些 NPs 的抗菌效果也体现在它们能够阻碍细菌生长,突出了它们在应对细菌感染和潜在的抗生素耐药性方面的潜力。此外,还评估了 Zn-MO 和 Gd-MO NPs 的抗氧化活性,发现它们具有清除自由基和缓解氧化应激的能力。总之,研究结果强调了 Zn-MO 和 Gd-MO NPs 的重要生物活性,使它们成为生物医学和制药研究领域有望进一步探索和开发的候选物质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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