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首页> 外文期刊>Open Journal of Marine Science >Ameliorative Effects of Spirulina platensis on Deltamethrin-Induced Biochemical Alterations and Oxidative Stress in the African Catfish; Clarias gariepinus
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Ameliorative Effects of Spirulina platensis on Deltamethrin-Induced Biochemical Alterations and Oxidative Stress in the African Catfish; Clarias gariepinus

机译:螺旋藻对溴氰菊酯诱导的非洲Cat鱼生化变化和氧化应激的改善作用;苦参

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摘要

The present study was carried out to determine LC50 of deltamethrin (DM) in the African catfish; Clarias gariepinus, investigate its effects on the biochemical parameters and the antioxidant status of various tissues, and assess the protective role of Spirulina platensis (SP) against DM induced toxicity in C. gariepinus. The fish were distributed into seven groups of 10 fish/each for 30 days as follows: Group 1, control; Group 2, orally administered saline; Group 3, oral SP (150 mg/kg b.w.); Group 4, exposed to 5.19 μg/l DM; Group 5, exposed to 5.19 μg/l DM and orally administered SP (150 mg/kg b.w.); Group 6, exposed to 12.97 μg/l DM; and Group 7, exposed to 12.97 μg/l DM and orally administered SP (150 mg/kg b.w.). Results revealed marked elevation in serum AST, ALT, ALP, creatinine, urea and uric acid. Significant decrease in serum total protein and albumin was recorded. At the same time, the level of malondialdehyde (MDA) was significantly increased in liver, kidney and gills. While, tissue level ofGSHand, SOD,CATandGSH-Px activities were reduced. Treatment with SP improved the biochemical parameters and attenuated the DM induced oxidative damage. Therefore, this study confirmed the protective role of SP as an antioxidant against the toxicity of DM in catfish.
机译:本研究旨在测定非洲cat鱼中溴氰菊酯(DM)的LC50。 Clarias gariepinus,研究其对各种组织的生化参数和抗氧化剂状态的影响,并评估螺旋藻(SP)对DM引起的GAR C. gariepinus毒性的保护作用。将鱼分成7组,每组10条鱼,每组30天,方法如下:第一组,对照组;第二组,对照组。第2组,口服生理盐水;第3组,口服SP(150 mg / kg体重);第4组,暴露于5.19μg/ l DM;第5组,暴露于5.19μg/ l DM并口服SP(150 mg / kg b.w.);第6组,暴露于12.97μg/ l DM;第7组,暴露于12.97μg/ l DM并口服SP(150 mg / kg b.w.)。结果显示血清AST,ALT,ALP,肌酐,尿素和尿酸显着升高。记录到血清总蛋白和白蛋白显着下降。同时,肝脏,肾脏和g中的丙二醛(MDA)水平显着增加。同时,GSHand,SOD,CAT和GSH-Px活性的组织水平降低。 SP处理改善了生化参数并减弱了DM引起的氧化损伤。因此,这项研究证实了SP作为抗氧化剂对against鱼DM毒性的保护作用。

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