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Oxidative stress mediated hepatotoxicity induced by ZNP and modulatory role of fruit extract on male Wistar rat

机译:ZNP诱导的氧化应激介导的肝毒性及水果提取物对雄性Wistar大鼠的调节作用

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摘要

Zinc oxide nanoparticles (ZNP) are being used in various fields viz cosmetics industry as UV protectants, in the food packaging industry due to their anti-bacterial properties, in agriculture as micronutrients, etc. Increased applications of ZNPs in our day to day life, leading to the contamination of the surrounding environment posing a direct or indirect health risk. Various reports suggest that fruits and vegetables are a rich source of phytochemicals having antioxidant properties which help in neutralizing ROS generated on metal toxicity of the body. The present study focuses to study the ameliorative effect of apple ( ) extract (E) on ZNP induced toxicity. Therefore, animals were grouped, six in each, exposed to various doses of ZNP (50 and 250 mg/kg), ZNP (50 and 250 mg/kg)+E. The studied parameters was: food intake, water intake, antioxidants assay, zinc accumulation, and histological alterations and was compared to control. Investigation revealed that ZNP induces toxicity as revealed by the alteration in the studied parameter, whereas those exposed to ZNP along with Pyrus malus fruit extract try to reduce the toxicity induced by nanoparticles but at low doses only. This ameliorative effect of fruit extract might be due to the presence of antioxidants scavenging the free radicals generated by ZNPs suggesting that antioxidant-rich fruit may have a protective role and have the potential to reduce the nanoparticles mediated oxidative stress.
机译:氧化锌纳米粒子(ZNP)由于其抗菌特性而在化妆品工业,食品包装工业中用作紫外线防护剂,在农业中用作微量营养素等。ZNP在我们日常生活中的应用不断增加,导致对周围环境的污染,构成直接或间接的健康风险。各种报道表明,水果和蔬菜是具有抗氧化特性的植物化学物质的丰富来源,有助于中和金属对人体的毒性而产生的ROS。本研究的重点是研究苹果提取物(E)对ZNP诱导的毒性的改善作用。因此,将动物分组,每组六只,分别暴露于不同剂量的ZNP(50和250 mg / kg),ZNP(50和250 mg / kg)+ E。研究的参数是:食物摄入,水摄入,抗氧化剂测定,锌积累和组织学改变,并与对照进行了比较。研究表明,如研究参数的变化所揭示,ZNP会诱导毒性,而暴露于ZNP的梨和海棠果提取物则试图降低纳米颗粒诱导的毒性,但仅在低剂量下有效。水果提取物的这种改善作用可能是由于存在抗氧化剂清除ZNP产生的自由基,这表明富含抗氧化剂的水果可能具有保护作用,并有可能减少纳米颗粒介导的氧化应激。

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