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Surface Functionalization of Iron Oxide Nanoparticles with Gallic Acid as Potential Antioxidant and Antimicrobial Agents

机译:没食子酸作为潜在的抗氧化剂和抗菌剂的氧化铁纳米粒子的表面功能化。

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摘要

In this research, we report the size-controlled synthesis and surface-functionalization of magnetite with the natural antioxidant gallic acid (GA) as a ligand, using in situ and post-synthesis methods. GA functionalization provided narrow size distribution, with an average particle size of 5 and 8 nm for in situ synthesis of gallic acid functionalized magnetite IONP@GA1 and IONP@GA2, respectively, which are ultra-small particles as compared to unfunctionalized magnetite (IONP) and post functionalized magnetite IONP@GA3 with average size of 10 and 11 nm respectively. All the IONPs@GA samples were found hydrophilic with stable aggregation state. Prior to commencement of experimental lab work, PASS software was used to predict the biological activities of GA and it is found that experimental antioxidant activity using 2,2-diphenyl-1-picrylhydrazyl (DPPH) assay and antimicrobial studies using well diffusion method are in good agreement with the simulated results. Furthermore, the half maximal inhibitory concentration (IC50) values of DPPH antioxidant assay revealed a 2–4 fold decrease as compared to unfunctionalized IONP. In addition to antioxidant activity, all the three IONP@GA proved outstanding antimicrobial activity while testing on different bacterial and fungal strains. The results collectively indicate the successful fabrication of novel antioxidant, antimicrobial IONP@GA composite, which are magnetically separable, efficient, and low cost, with potential applications in polymers, cosmetics, and biomedical and food industries.
机译:在这项研究中,我们报告了使用原位和后合成方法以天然抗氧化剂没食子酸(GA)为配体的磁铁矿的尺寸控制合成和表面功能化。 GA功能化提供了狭窄的尺寸分布,原位合成没食子酸功能化磁铁矿IONP @ GA1和IONP @ GA2的平均粒径分别为5和8 nm,与未功能化磁铁矿(IONP)相比,它们是超小颗粒后功能化磁铁矿IONP @ GA3的平均尺寸分​​别为10和11 nm。发现所有IONPs @ GA样品均具有亲水性并具有稳定的聚集状态。在开始实验实验室工作之前,使用PASS软件预测了GA的生物学活性,并且发现使用2,2-二苯基-1-吡啶并肼基(DPPH)测定法进行的实验抗氧化活性和采用孔扩散法进行的抗菌研究已在进行中。与模拟结果吻合良好。此外,与未官能化的IONP相比,DPPH抗氧化剂测定的半数最大抑制浓度(IC50)值降低了2-4倍。除抗氧化活性外,所有三种IONP @ GA均在不同细菌和真菌菌株上进行测试时证明具有出色的抗菌活性。这些结果共同表明新型抗氧化剂,抗菌IONP @ GA复合材料的成功制造,该复合材料可磁分离,高效且低成本,在聚合物,化妆品,生物医学和食品工业中具有潜在的应用前景。

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