首页> 外文期刊>Journal of animal and veterinary advances >The Effects of Caffeic Acid Phenethyl Ester and Ellagic Acid on the Levels of Malondialdehyde, Reduced Glutathione and Nitric Oxide in the Lung, Liver and Kidney Tissues in Acute Diazinon Toxicity in Rats
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The Effects of Caffeic Acid Phenethyl Ester and Ellagic Acid on the Levels of Malondialdehyde, Reduced Glutathione and Nitric Oxide in the Lung, Liver and Kidney Tissues in Acute Diazinon Toxicity in Rats

机译:咖啡酸苯乙基酯和鞣花酸对大鼠急性二嗪农毒性肺中丙二醛,还原型谷胱甘肽和一氧化氮的影响

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The aim of this study was to investigate the effects of Caffeic Acid Phenethyl Ester (CAPE) and Ellagic Acid (EA) on acitivities of Malondialdehyde (MDA), reduced Glutathione (GSH) and Nitric Oxide (NO) in rat lung, liver and kidney tissues in acute Diazinon (DI) toxicity. Six groups of 6 Sprague Dawley rats were used comprising control, CAPE, EA, DI control, DI+CAPE and DI+EA. Tissue samples were analysed for GSH, MDA and NO levels in lung, liver and kidney tissues. Biochemical parameters were measured colormetrically by spectrophotometer. Control, CAPE and EA groups showed no statistically significant difference whereas DI+medication groups revealed that CAPE and EA increased the level of GSH in liver tissue by blocking the DI effect. NO levels in lung, liver and kidney tissues were significantly increased by DI but CAPE and EA attenuated those levels. In DI+medication groups, MDA levels showed no significant change in kidney and liver tissues but in lung tissues, CAPE and EA reduced the MDA level by blocking the DI effect. It was concluded that CAPE and EA which showed similar effects to each other could be used for protection and support against oxidative stress caused by acute DI intoxication.
机译:这项研究的目的是研究咖啡酸苯乙基酯(CAPE)和鞣花酸(EA)对大鼠肺,肝和肾中丙二醛(MDA),还原型谷胱甘肽(GSH)和一氧化氮(NO)活性的影响组织中有急性二嗪农(DI)毒性。使用六组6只Sprague Dawley大鼠,包括对照,CAPE,EA,DI对照,DI + CAPE和DI + EA。分析组织样品中肺,肝和肾组织中的GSH,MDA和NO水平。生化参数通过分光光度计比色测定。对照组,CAPE和EA组无统计学差异,而DI +药物治疗组则表明CAPE和EA通过阻断DI作用提高了肝脏组织中GSH的水平。 DI显着增加了肺,肝和肾组织中的NO水平,但CAPE和EA减弱了这些水平。在DI +药物治疗组中,肾脏和肝脏组织中的MDA水平没有明显变化,但在肺组织中,CAPE和EA通过阻断DI的作用降低了MDA水平。可以得出结论,CAPE和EA表现出相似的作用,可用于保护和支持抵抗由DI急性中毒引起的氧化应激。

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