首页> 外文期刊>Journal of Toxicologic Pathology >Antioxidant Activity of Tocotrienol Rich Fraction Prevents Fenitrothion-induced Renal Damage in Rats
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Antioxidant Activity of Tocotrienol Rich Fraction Prevents Fenitrothion-induced Renal Damage in Rats

机译:富含生育三烯酚的组分的抗氧化活性可防止杀Fe硫磷引起的大鼠肾脏损伤

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Fenitrothion (FNT) is an organophosphate compound widely used as pesticide in Malaysia. The present study aims to investigate effects of palm oil tocotrienol rich fraction (TRF) on the renal damage of FNT-treated rats. A total of 40 male Sprague Dawley rats were divided into 4 groups randomly, the control, TRF, FNT and FNT+TRF groups. FNT (20 mg/kg b.w.) and TRF (200 mg/kg b.w.) were given orally for 28 days continuously. Rats from the FNT+TRF group were supplemented with TRF 30 minutes prior to administration of FNT. Rats were sacrificed after 28 days, and the kidneys were removed for determination of oxidative stress and histological analysis. Plasma was collected for determination of blood creatinine and urea level. Statistical analysis showed that palm oil TRF has a protective effect against renal oxidative damage induced by FNT. In the FNT+TRF group, malondialdehyde and protein carbonyl levels were significantly lower, while the glutathione level as well as superoxide dismutase and catalase activities were significantly higher compared with the FNT-treated group (p0.05). Histological evaluation also revealed that the FNT+TRF group had less glomerulus and renal tubule damage than the FNT-treated group. In conclusion, palm oil TRF was able to reduce oxidative stress and renal damage in FNT-treated rats.
机译:Fenitrothion(FNT)是一种有机磷酸盐化合物,在马来西亚广泛用作农药。本研究旨在研究棕榈油中富含生育三烯酚的馏分(TRF)对FNT治疗的大鼠的肾脏损害的影响。将40只雄性Sprague Dawley大鼠随机分为4组,即对照组,TRF,FNT和FNT + TRF组。连续口服FNT(20 mg / kg b.w.)和TRF(200 mg / kg b.w.)。 FNT + TRF组的大鼠在给予FNT之前30分钟补充了TRF。 28天后处死大鼠,取出肾脏用于测定氧化应激和组织学分析。收集血浆以测定血液肌酐和尿素水平。统计分析表明,棕榈油TRF对FNT引起的肾脏氧化损伤具有保护作用。与FNT治疗组相比,FNT + TRF组的丙二醛和蛋白质羰基水平显着降低,而谷胱甘肽水平以及超氧化物歧化酶和过氧化氢酶活性则显着较高(p0.05)。组织学评估还显示,FNT + TRF组的肾小球和肾小管损伤少于FNT治疗组。总之,棕榈油TRF能够减轻FNT治疗的大鼠的氧化应激和肾脏损害。

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