Acute triflumuron exposure induces oxidative stress responses in liver and kidney of Balb/C mice

被引:0
|
作者
Rim Timoumi
Ines Amara
Fadwa Neffati
Mohamed Fadhel Najjar
Emna El Golli-Bennour
Hassen Bacha
Salwa Abid-Essefi
机构
[1] Faculty of Dental Medicine,Laboratory for Research on Biologically Compatible Compounds
[2] Higher Institute of Biotechnology of Monastir,Laboratory of Biochemistry
[3] Monastir University Hospital,Toxicology
来源
Environmental Science and Pollution Research | 2019年 / 26卷
关键词
Triflumuron; Oxidative stress; Antioxidant enzyme activities; Biochemical parameters;
D O I
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中图分类号
学科分类号
摘要
Triflumuron (TFM) is one of the most widely used insecticides over the world. It is a benzoylphenyl urea that belongs to the class of insect growth regulators. This insecticide acts by inhibiting insect’s chitin synthesis and by consequences, making insect more susceptible to pathogens and malformations. TFM effects have been reported in mammalians and crops. However, studies that reveal its toxicity mechanisms are limited. In this line, the current study aimed to determine the implication of oxidative stress in the toxicity induced by TFM and particularly in the perturbation of biochemical parameters in male Balb/C mice. Male Balb/C mice were divided into three groups receiving TFM at doses of 250, 350, and 500 mg/kg bw respectively. The occurrence of oxidative stress in both kidney and liver tissues was monitored by measuring of oxidative stress markers. TFM caused an increase as protein carbonyls generation, malondialdehyde induction (MDA) and catalase (CAT), superoxide dismutase (SOD), glutathion peroxidase (Gpx), as well as glutathion S transferase (GST) activities. In the same conditions, we have evaluated the effect of TFM treatment on biochemical parameters. In response to the three TFM doses, we showed significant dose dependent inductions in all tested oxidative stress markers. However, TFM caused an increase in the liver enzyme activities as aspartate transaminase (AST), alanine transaminase (ALT), alkaline phosphatase (ALP), g-glutamyltranspeptidase (GTT), and total bilirubin (BILT) in a dose-dependent manner. Equally, renal markers as urea, uric acid, albumin, and creatinine were increased in the same manner. We can conclude that oxidative damage seems to be a key determinant of TFM-induced toxicity in both liver and kidney of male Balb/C mice. Moreover, the oxidative stress is more pronounced in the liver than in the kidney. Thus, TFM may be considered as a hepatotoxic insecticide.
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页码:3723 / 3730
页数:7
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