首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Anticancer, antimicrobial and photocatalytic activities of green synthesized magnesium oxide nanoparticles (MgONPs) using aqueous extract of for Sargassum wightii
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Anticancer, antimicrobial and photocatalytic activities of green synthesized magnesium oxide nanoparticles (MgONPs) using aqueous extract of for Sargassum wightii

机译:使用Sargassum的含水提取物的绿色合成氧化镁纳米粒子(MgOnps)的抗癌,抗微生物和光催化活性

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摘要

A rapid and ecofriendly fabrication of metal oxide nanoparticles using biogenic sources is the current trend being used to replace the toxic chemical method. The present study was carried out to synthesize magnesium oxide nanoparticles (MgONPs) using the marine brown algae Sargassum wighitii as the reducing and capping agent. The as-prepared MgONPs were characterized by spectroscopic and microscopic analyses. UV-visible spectrum of the MgONPs showed a sharp absorption peak at 322 nm. X- ray diffraction analysis illustrated that the MgONPs were crystalline in nature with a face-centered cubic structure. Presence of magnesium and oxygen were further confirmed by EDX profile. FTIR analysis showed the presence of functional groups specific for sulfated poly-saccharides, which might be responsible for the synthesis of MgONPs. Zeta potential and dynamic light scattering analysis illustrated that the MgONPs were highly stable at 19.8 mV with an average size of 68.06 nm. MgONPs showed potent antibacterial activity and antifungal activities against human pathogens. Photocatalytic activity of MgONPs was witnessed by the quick degradation of the organic dye methylene blue on exposure to both sunlight and UV irradiation. MgONPs showed significant cytotoxicity against the lung cancer cell lines A549 in a dose dependent manner with the IC50 value of 37.5 +/- 0.34 mu g/ml. Safety evaluation using peripheral blood mononuclear cells (PBMCs) illustrated the MgONP5 to be non-toxic in nature. Overall, the results concluded that the MgONPs generated using marine algae have exhibited scope for multifaceted biological applications.
机译:使用生物源的氧化金属氧化物纳米颗粒的快速和生态繁体的制造是当前趋势用于代替毒性化学方法。进行本研究以合成氧化镁纳米粒子(MgOnps)使用海洋棕榈藻Sargassum wighitii作为还原剂和封盖剂。通过光谱和显微镜分析表征了AS制备的MGONP。 Mgonps的UV可见光谱显示出322nm的清晰吸收峰。 X射线衍射分析表明,MgOnps与面为中心的立方结构的性质中是结晶的。通过EDX曲线进一步证实镁和氧的存在。 FTIR分析显示存在对硫酸化多糖特异的功能基团的存在,这可能负责合成MgOnps。 Zeta电位和动态光散射分析说明MgOnps在19.8 mV的高度稳定,平均尺寸为68.06nm。 MgOnps显示出强效抗菌活性和针对人类病原体的抗真菌活性。通过快速降解阳光和紫外线照射的有机染料亚甲基蓝的快速降解目睹Mgonps的光催化活性。 Mgonps以剂量依赖性方式对肺癌细胞系A549的显着细胞毒性显示出肺癌癌细胞系A549,IC 50值为37.5 +/-0.34μg/ ml。使用外周血单核细胞(PBMC)的安全评估说明了MGONP5在自然界中无毒。总体而言,结果得出结论:使用海藻生成的MgOnps表现出多丝状生物应用的范围。

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