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首页> 外文期刊>Water, air and soil pollution >In Vivo Effects on Stress Protein, Genotoxicity, and Oxidative Toxicity Parameters in Oreochromis niloticus Tissues Exposed to Thiamethoxam
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In Vivo Effects on Stress Protein, Genotoxicity, and Oxidative Toxicity Parameters in Oreochromis niloticus Tissues Exposed to Thiamethoxam

机译:在暴露于祖紫红色的肌肉内核组织中对应激蛋白质,遗传毒性和氧化毒性参数的体内影响

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This study aimed to observe the effect of toxicity of the pesticide thiamethoxam (TMX) at sublethal concentrations in the liver and brain of Oreochromis niloticus. In the experiment, fish were exposed to 50, 100, and, 150 mg/L with thiamethoxam for 48 h and 15 days. The superoxide dismutase (SOD), catalase (CAT), glutathione S-transferaz (GST), glutathione peroxidase (GPx), and ethoxyresorufin-O-deethylase (EROD) activities; and thiobarbituric acid reactive substance (TBARS), heat shock proteins 70 (HSP70), glutathione (GSH), and genotoxicity parameter 8-hydroxy-2 '-deoxyguanosine (8-OHdG) were analyzed by spectrophotometric methods and ELISA techniques. Depending on time and dose in TMX exposure in liver tissue, a significant decrease in GSH level; an increase in SOD, GST, GPx, and EROD enzyme activities; and HSP70, TBARS, and 8-OHdG levels was determined. In brain tissue, SOD, GST, and EROD enzyme activities, an increase in HSP70, TBARS, and 8-OHdG levels, and a decrease in CAT enzyme activity and GSH levels were determined. In this study, TMX in the concentrations used showed that changes in oxidative stress biomarkers, genotoxicity parameter 8-OHdG levels, and HSP70 levels caused toxic effects in the model organism. As a result of the study, the changes and protective effects of the antioxidant system and stress proteins at the cellular level were determined in sublethal doses of toxic effects caused by TMX in the vital organs of the organism. In this toxicological study, TMX exposure resulted in toxicity to O. niloticus liver and brain tissues, in addition, responses of biomarkers to time and concentrations were determined. As a result of this study, the potential toxic effects of the commonly used pesticide TMX will reveal both the ecological risks of the aquatic organism and the basic data of the safety and risk assessments of O. niloticus consumed as food for human health.
机译:本研究旨在观察含有农药硫胺(TMX)在肝癌肝癌中的杀虫剂浓度的毒性效果。在实验中,鱼暴露于50,100,以及150mg / L,含有硫昔苏姆48小时和15天。超氧化物歧化酶(SOD),过氧化氢酶(CAT),谷胱甘肽S-Trancessaz(GST),谷胱甘肽过氧化物酶(GPX)和乙醇酸乙烯 - O-脱甲酶(EROD)活性;通过分光光度法和ELISA技术分析,通过分光光度法和ELISA技术分析硫氨基吡咯酸反应物质(TBARS),热休克蛋白70(HSP70),谷胱甘肽(GSH)和遗传毒性参数8-羟基-2'-丁氧阳素(8-OHDG)。根据TMX暴露在肝组织中的时间和剂量,GSH水平显着降低; SOD,GST,GPX和EROD酶活性增加;和HSP70,TBAR和8-OHDG水平确定。在脑组织中,SOD,GST和EROD酶活性,测定HSP70,TBAR和8-OHDG水平的增加,以及猫酶活性和GSH水平的降低。在该研究中,所用浓度的TMX显示,氧化应激生物标志物,遗传毒性8-OHDG水平和HSP70水平的变化导致模型生物中的毒性作用。作为研究的结果,抗氧化系统和应激蛋白在细胞水平下的变化和保护作用在有机体的重要器官中由TMX引起的致死毒性作用确定。在该毒理学研究中,TMX暴露导致O. NiLoticus肝脏和脑组织的毒性,此外,确定生物标志物对时间和浓度的反应。由于本研究,常用的农药TMX的潜在毒性作用将揭示水生物体的生态风险以及作为人类健康食品消耗的O. NiLoticus的安全和风险评估的基本数据。

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