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Response of antioxidase in viscera of Pagrosuma Major larvae to water soluble fraction of hydrocarbons in No. 0 diesel oil

机译:罗汉果内脏中抗氧化酶对0号柴油中烃类水溶性成分的响应

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Pagrosomus major larvae were exposed to the water-soluble fraction of hydrocarbon in No.0 diesel oil (corresponding to No.2 fuel oil) at concentrations of 0, 0.17, 1.22 and 8.82 mg/L for up to 15 days. Larvae were sampled on days 9 and 15 of the experiment. Supernatants of viscera tissue extractions were assayed for biochemical response in terms of oxidative stress-superoxide dismutase(SOD), activity of selenium-dependant glutathione peroxidase(Se-GPx) and catalase(Ca), and the concentration of reduced glutathione( GSH) . On day 9 of exposure, statistically significant dose-related increases in Se-GPx and SOD activity, and GSH concentration were observed in all cases except for Se-GPx activity under the highest dosage of hydrocarbon. However, on day 15 of exposure, a similar dose-related response was only observed for Se-GPx activity. GSH concentration decreased and SOD activity showed no statistical difference as compared to controls. However, a significant decrease in compared to day 9 Se-GPx activity and GSH concentration, in contrast to increase SOD activity at day 15 as indicates an accelerated accumulation of H_2O_2 and potential oxidative damage under long term exposure of larvae to hydrocarbons. No statistical changes were observed in Ca activity throughout the experiment, possibly owing to the high efficiency of Se-GPx. A recovery experiment was performed on indicating that the response of antioxidants measured tending to return to their control levels. These results prove the function of the antioxidant defense system of the larvae to the water-soluble fraction of hydrocarbons in No. 0 diesel oil.
机译:Pagrosomus主要幼虫暴露于0、0.17、1.22和8.82 mg / L浓度的0号柴油(相当于2号燃料油)中的烃类水溶性部分长达15天。在实验的第9天和第15天取样幼虫。根据氧化应激超氧化物歧化酶(SOD),硒依赖性谷胱甘肽过氧化物酶(Se-GPx)和过氧化氢酶(Ca)的活性以及还原型谷胱甘肽(GSH)的浓度来分析内脏组织提取物的上清液的生化反应。在暴露的第9天,在最高碳氢化合物剂量下,除Se-GPx活性外,在所有情况下均观察到Se-GPx和SOD活性与GSH浓度的统计学显着剂量相关增加。但是,在暴露的第15天,仅对Se-GPx活性观察到类似的剂量相关反应。与对照相比,GSH浓度降低,SOD活性无统计学差异。但是,与第9天的Se-GPx活性和GSH浓度相比,第15天的SOD活性显着下降,这表明在幼虫长期暴露于碳氢化合物下,H_2O_2的积累加速,潜在的氧化损伤。在整个实验中,未观察到Ca活性的统计变化,这可能是由于Se-GPx的高效率所致。进行恢复实验,结果表明测得的抗氧化剂反应趋于回到其对照水平。这些结果证明了幼虫的抗氧化剂防御系统对0号柴油中烃的水溶性部分的功能。

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