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首页> 外文期刊>Aquatic Toxicology >Vitamin C attenuates biochemical and genotoxic damage in common carp (Cyprinus carpio) upon joint exposure to combined toxic doses of fipronil and buprofezin insecticides
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Vitamin C attenuates biochemical and genotoxic damage in common carp (Cyprinus carpio) upon joint exposure to combined toxic doses of fipronil and buprofezin insecticides

机译:维生素C在联合暴露于联合毒性剂量的Fipronil和Buprofezin杀虫剂时衰减鲤鱼(Cyprinus carpio)中的生化和遗传毒性损伤

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摘要

In the present study, potential protective role of Vitamin C (L-ascorbic acid) was investigated in aquaria acclimated common carp (Cyprinus carpio) following exposure for 96 h to combined toxic doses of fipronil (FP) and buprofezin (BPFN) insecticides in combination (FP: 200 mu g/L; 4.57 x 10(-7) mol/L and BPFN: 50 mg/L; 1.64 x 10(-4) mol/L). At end of 96 h exposure, fish were supplemented with low (25 mg/L) and high (50 mg/L) doses of Vitamin C, added once daily to aquaria water for continuous three weeks. Appropriate control groups were run in parallel. Fish behavior was monitored throughout for signs of toxicity. At completion of experiments, liver, kidney, brain and gills were excised for toxicity assessment and possible remediation by the Vitamin C through biochemical determination of reactive oxygen species (ROS), thiobarbituric acid reactive substances or TBARS, reduced glutathione (GSH) and total protein content, levels of catalase (CAT), superoxide dismutase (SOD) and peroxidase (POD), and the Comet assay. Hepatosomatic index (HSI), condition factor (CF), survival rate (SR), and combination index (CI) were also determined. Data were compared statistically at p & 0.05. Results showed significant behavioral and biochemical alterations, and DNA damage in the fish group exposed to FP and BPFN in combination. In fish groups supplemented with Vitamin C following FP and BPFN treatment, significant alleviation in tissue damage and toxic effects was represented by substantial decreases in ROS and TBARS production (p & 0.001), along with a concomitant significant increase in the survival rate, GSH and total protein content, HSI, CF, and activities of SOD, CAT and POD enzymes (p & 0.001). Mean tail length of comet and percent tail DNA decreased significantly (p & 0.001), which indicated amelioration of DNA damage. The study concludes that Vitamin C is an effective remedial treatment against FP and BPFN-induced damage in exposed fish.
机译:在本研究中,在水族馆调查了维生素C(L-抗坏血酸)的潜在保护作用适应了96小时后的常见的鲤鱼(Cyprinus Carpio),以组合毒性剂量(FP)和Buprofezin(BPFN)杀虫剂组合的毒性剂量(FP:200 mu g / l; 4.57 x 10(-7)mol / l和bpfn:50 mg / l; 1.64 x 10(-4)mol / l)。在96小时暴露的末端,鱼类补充有低(25mg / L)和高(50mg / L)的维生素C,每天加入一次半水,连续三周。适当的对照组并行运行。在整个毒性迹象中监测鱼类行为。在完成实验中,通过生化测定反应性氧(ROS),硫氨基比酸反应性物质或TBARS,降低谷胱甘肽(GSH)和总蛋白,切除毒性评估和通过维生素C的毒性评估和可能的修复来切除毒性评估和可能的修复。含量,过氧化氢酶(猫),超氧化物歧化酶(SOD)和过氧化物酶(POD)和彗星测定水平。还确定了肝脏指数(HSI),条件因子(CF),存活率(SR)和组合指数(CI)。数据在P& LT; 0.05。结果表明,与FP和BPFN暴露于FP和BPFN的鱼群中的DNA损伤表现出显着的行为和生物化学改变。在FP和BPFN处理后补充维生素C的鱼群中,通过ROS和TBARS生产(P& 0.001)的实质性降低,提出了显着的组织损伤和毒性效应的显着减轻,以及伴随的存活率显着增加,GSH和总蛋白质含量,HSI,CF和SOD,CAT和POD酶的活性(P& 0.001)。彗星的平均尾部长度和尾DNA百分比显着降低(P& 0.001),这表明DNA损伤的改善。该研究得出结论,维生素C是针对FP和BPFN诱导的暴露鱼类损伤的有效补救治疗。

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