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通过生物燃烧法,以无花果为原料制备的氧化铈纳米颗粒作为有效的抗氧化剂、抗癌剂和染料降解剂。

Cerium oxide nanoparticles prepared through Bio-combustion using Ficus carica as effective antioxidant, anticancer and dye degrading agent.

作者信息

Majani Sanjay S, Singh Pallavi, Kumari Pallavi, Setty Poojitha B Sridhara, Shivamallu Chandan, Srinivasa Chandrashekar, Abass Kasim Sakran, Iqbal Muzaffar, Amachawadi Raghavendra G, Stupin Victor, Silina Ekaterina, Kollur Shiva Prasad

机构信息

School of Physical Sciences, Amrita Vishwa Vidyapeetham, Mysuru Campus, Mysuru, 570 026, Karnataka, India.

Department of Biotechnology, Graphic Era Deemed to be University, Clement Town, Dehradun, 248 002, Uttarakhand, India.

出版信息

Sci Rep. 2025 Aug 19;15(1):30285. doi: 10.1038/s41598-025-13914-3.

Abstract

The rising levels of environmental contamination and oxidative stress disorders have led to a growing demand for multifunctional nanomaterials that possess both biomedical and catalytic importance. CeO nanoparticles (NPs) were synthesized using a green solution combustion method involving Ficus carica F. extract, followed by an evaluation of their structural, biological, and photocatalytic properties. XRD confirmed a pure cubic fluorite phase (Fm-3m) with a crystallite size of 11.3 nm, which was also validated through Williamson-Hall and Rietveld refinements (χ = 1.9). FTIR spectroscopy revealed strong Ce-O vibrational modes at 955 cm, and a bandgap of 3.03 eV was determined through DRS. The SEM/TEM images displayed spherical, agglomerated particles with an average diameter of 13.5 nm. The BET analysis revealed a surface area of 30.081 m/g, a pore radius of 1.374 nm, and a pore volume of 0.057 cm/g, confirming the presence of microporosity. The analysis via XPS validated the existence of Ce, O, and C, revealing the coexistence of Ce/Ce oxidation states alongside surface hydroxyl species. CeO NPs exhibited a dose-dependent redox activity that resulted in a reduction of cell viability to 48.82% at a concentration of 50 µM. HO enhanced LDH release to 223.86%, whereas CeO NPs (1-7.5 µM) reduced it to 124.84%, demonstrating redox cycling antioxidant protection. Fluorescence imaging showed dose-dependent duality-antioxidant at low, pro-oxidant at high-consistent with mitochondrial damage and ATP depletion. Furthermore, CeO NPs demonstrated a remarkable 94.9% degradation of methylene blue under visible light, indicating their significant potential for both therapeutic and environmental applications.

摘要

环境污染和氧化应激紊乱水平的不断上升,导致对兼具生物医学和催化重要性的多功能纳米材料的需求日益增长。使用涉及无花果提取物的绿色溶液燃烧法合成了CeO纳米颗粒(NPs),随后对其结构、生物学和光催化性能进行了评估。XRD证实为纯立方萤石相(Fm-3m),微晶尺寸为11.3nm,通过威廉姆森-霍尔法和里特韦尔德精修法也得到了验证(χ = 1.9)。FTIR光谱显示在955cm处有强烈的Ce-O振动模式,通过DRS测定带隙为3.03eV。SEM/TEM图像显示为球形、团聚颗粒,平均直径为13.5nm。BET分析显示表面积为30.081m/g,孔半径为1.374nm,孔体积为0.057cm/g,证实存在微孔。通过XPS分析验证了Ce、O和C的存在,揭示了Ce/Ce氧化态与表面羟基物种的共存。CeO NPs表现出剂量依赖性的氧化还原活性,在浓度为50μM时导致细胞活力降低至48.82%。HO使LDH释放增加至223.86%,而CeO NPs(1-7.5μM)将其降低至124.84%,表明氧化还原循环抗氧化保护作用。荧光成像显示在低剂量时具有剂量依赖性的双重抗氧化作用,在高剂量时具有促氧化作用,这与线粒体损伤和ATP消耗一致。此外,CeO NPs在可见光下对亚甲基蓝的降解率高达94.9%,表明它们在治疗和环境应用方面具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f9dd/12365148/973ccc5523b3/41598_2025_13914_Fig1_HTML.jpg

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