牛磺酸减轻了毒死蜱和铅共同暴露的雄性Wistar大鼠的生化变化

M. Akande, Y. Aliu, S. Ambali, J. Ayo
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引用次数: 7

摘要

本研究的目的是探讨牛磺酸对毒死蜱和铅共同暴露的雄性Wistar大鼠生化参数的影响。50只大鼠被分成5组,每组10只大鼠。蒸馏水(DW)组给予蒸馏水,大豆油(SO)组给予大豆油(1 ml/kg)。其余各组依次给予牛磺酸(50 mg/kg)、毒死蜱(4.25 mg/kg, 1/20 LD50)和铅(233.25 mg/kg, 1/20 LD50),最后一组分别给予牛磺酸(50 mg/kg)、毒死蜱(4.25 mg/kg)和铅(233.25 mg/kg)。治疗方法为每日口服灌胃一次。16周后处死大鼠,采集血样。分析血清蛋白、酶、尿素和肌酐浓度。测定肝、肾丙二醛浓度及肝、肾抗氧化酶活性。结果表明,毒死蜱(CPF)和醋酸铅(LA)长期联合给药可引起大鼠体内生化变化。提示牛磺酸抗氧化剂(TA)通过其抗氧化、保肝、保肾的作用,降低了机体生化指标的变化。结果表明,牛磺酸对持续暴露于毒死蜱和铅环境中的个体具有良好的预防作用。关键词:牛磺酸,毒死蜱,铅,氧化应激,生化效应
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Taurine alleviated biochemical alterations in male Wistar rats co-exposed to chlorpyrifos and lead
The aim of the study was to investigate the effects of taurine on biochemical parameters in male Wistar rats co-exposed to chlorpyrifos and lead. Fifty rats were divided into five groups of ten rats each. The distilled water (DW) group received distilled water and the soya oil (SO) group received soya oil (1 ml/kg). Other groups were treated sequentially with taurine (50 mg/kg), chlorpyrifos (4.25 mg/kg, 1/20th LD50) and lead (233.25 mg/kg, 1/20th LD50), and the last group received taurine (50 mg/kg), chlorpyrifos (4.25 mg/kg) and lead (233.25 mg/kg). The treatments were administered once daily by oral gavage. The rats were sacrificed and blood samples were collected after 16 weeks. The serum samples were analyzed for proteins, enzymes, urea and creatinine concentration. The hepatic and renal malondialdehyde concentration and activities of hepatic and renal antioxidant enzymes were evaluated. The results indicated that chronic co-administration of chlorpyrifos (CPF) and lead acetate (LA) induced biochemical alterations in the rats. It is proposed that taurine antioxidant (TA) decreased the alterations in the biochemical parameters partly through its antioxidant, hepatoprotective and nephroprotective properties. It is concluded that taurine is a useful prophylactic agent against biochemical toxicity in individuals that are constantly co-exposed to chlorpyrifos and lead in the environment.   Key words: Taurine, chlorpyrifos, lead, oxidative stress, biochemical effects.
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