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Effect of Silver Nanomaterials on the Activity of Thiol-Containing Antioxidants

机译:银纳米材料对含巯基抗氧化剂活性的影响

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The use of nanomaterials in consumer products is rapidly expanding. In most studies, nanomaterials are examined as isolated ingredients. However, consumer products such as foods, cosmetics, and dietary supplements are complex chemical matrixes. Therefore, interactions between nanomaterials and other components of the product must be investigated to ensure the product's performance and safety. Silver nanomaterials are increasingly being used in food packaging as antimicrobial agents. Thiol-containing compounds, such as reduced glutathione (GSH), cysteine, and dihydrolipoic acid, are used as antioxidants in many consumer products. In the current study, we have investigated the interaction between silver nanomaterials and thiol-containing antioxidants. The selected Ag nanomaterials were Ag coated with citrate, Ag coated with poly(vinylpyrrolidone), and Au nanorods coated with Ag in a core/shell structure. We observed direct quenching of the l,l-diphenyl-2-picrylhydrazyl radical (DPPH) by all three Ag nanomaterials to varying degrees. The Ag nanomaterials also reduced the quenching of DPPH by GSH to varying degrees. In addition, we determined that the mixture of GSH and Au@Ag nanorods held at 37 °C was less effective at quenching azo radical than at ambient temperature. Furthermore, we determined that Au@Ag nanorods significantly reduced the ability of GSH and cysteine to quench hydroxyl and superoxide radicals. The work presented here demonstrates the importance of examining the chemical interactions between nanomaterials used in products and physiologically important antioxidants.
机译:纳米材料在消费产品中的使用正在迅速扩大。在大多数研究中,将纳米材料作为分离的成分进行检查。但是,诸如食品,化妆品和膳食补充剂之类的消费产品是复杂的化学基质。因此,必须研究纳米材料与产品其他成分之间的相互作用,以确保产品的性能和安全性。银纳米材料越来越多地在食品包装中用作抗菌剂。含硫醇的化合物,例如还原型谷胱甘肽(GSH),半胱氨酸和二氢硫辛酸,在许多消费产品中用作抗氧化剂。在当前的研究中,我们已经研究了银纳米材料和含硫醇的抗氧化剂之间的相互作用。所选择的Ag纳米材料是在芯/壳结构中涂覆有柠檬酸盐的Ag,涂覆有聚(乙烯基吡咯烷酮)的Ag以及涂覆有Ag的Au纳米棒。我们观察到所有三种Ag纳米材料都不同程度地直接淬灭了1,,1-二苯基-2-吡啶并肼基(DPPH)。银纳米材料还不同程度地减少了GSH对DPPH的猝灭。此外,我们确定,在37°C的温度下,GSH和Au @ Ag纳米棒的混合物在淬灭偶氮自由基方面比在环境温度下更无效。此外,我们确定Au @ Ag纳米棒显着降低了GSH和半胱氨酸淬灭羟基和超氧化物自由基的能力。本文介绍的工作表明,检查产品中使用的纳米材料与重要的生理抗氧化剂之间的化学相互作用的重要性。

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