首页> 外文期刊>Aquatic Toxicology >Cholinesterases and neurotoxicity as highly sensitive biomarkers for an organophosphate insecticide in a freshwater gastropod (Chilina gibbosa) with low sensitivity carboxylesterases.
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Cholinesterases and neurotoxicity as highly sensitive biomarkers for an organophosphate insecticide in a freshwater gastropod (Chilina gibbosa) with low sensitivity carboxylesterases.

机译:胆碱酯酶和神经毒性是淡水腹足动物(Chilina gibbosa)中有机磷杀虫剂的低敏感性羧酸酯酶的高度敏感生物标记。

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In the Upper Valley of Rio Negro and Rio Neuquen in Argentina, agriculture represents the second most important economic activity. Azinphos-methyl has been found in water from this region throughout the year at a maximum concentration of 22.48 micro g L-1 during the application period. Toxicological studies on local non-target species have been performed mostly on vertebrates, while mollusks, which could be more sensitive, have not been studied so far. This work aims to characterize cholinesterase (ChE) and carboxilesterase (CE) activities of Chilina gibbosa, a freshwater gastropod native to southern Argentina and Chile. These enzymes, together with neurotoxicity signals, are evaluated herein after as sensitive biomarkers of exposure to azinphos-methyl at environmentally relevant concentrations. Effects of azinphos-methyl on antioxidant defenses: glutathione (GSH), catalase (CAT), superoxide dismutase (SOD) and glutathione S-transferase (GST) are also studied in order to complete a set of biomarkers with different sensitivity and specificity, to propose C. gibbosa as a sentinel species. The highest specific activity was obtained with acetylthiocholine as substrate, followed by propionylthiocholine (83% in comparison to acetylthiocholine) and butyrylthiocholine (19%). The lowest Km and the highest efficiency for ChE were obtained with acetylthiocholine. Regarding CEs activities, a higher efficiency was obtained with p-nitrophenyl butyrate than with p-nitrophenyl acetate. Eserine produced significant inhibition of ChE activity (81% with 0.001 mM and 98% with 1 mM) while iso-OMPA did not produce any significant effect on ChE. Our results show that C. gibbosa ChE is very sensitive to azinphos-methyl (CI50 0.02 micro g L-1) while CEs are inhibited at higher concentrations (CI50 1000 micro g L-1). CEs have been reported to be more sensitive to OPs than ChEs in most of the aquatic invertebrates protecting the organisms from neurotoxic effects. In contrast, C. gibbosa, has ChE which are much more sensitive to azinphos-methyl than CEs and shows marked signs of neurotoxicity. Regarding antioxidant defenses, GSH levels were significantly increased by 0.02 and 20 micro g L-1 azinphos-methyl (80 and 103%, respectively), CAT activity was increased 85% only at 0.02 micro g L-1 and SOD and GST did not show any significant response. Since ChE activity, neurotoxicity signs, GSH and CAT are sensitive biomarkers of acute exposure to azinphos-methyl at environmental concentrations C. gibbosa could be included as sentinel species in monitoring programs of pesticide hazard in regions of Argentina and Chile.
机译:在阿根廷的里约内格罗河上游谷和里约内乌肯河上游谷,农业是第二重要的经济活动。在施用期间,该区域的水全年中都发现了谷硫磷,最大浓度为22.48 micro g L -1 。对本地非靶标物种的毒理学研究主要在脊椎动物上进行,而迄今为止还没有研究可能更敏感的软体动物。这项工作旨在表征Chilina gibbosa(一种原产于阿根廷南部和智利的淡水腹足类动物)的胆碱酯酶(ChE)和羧酸酯酶(CE)活性。在下文中,将这些酶与神经毒性信号一起作为暴露于环境相关浓度的谷硫磷的敏感生物标志物进行评估。谷硫磷对抗氧化剂防御的影响:还研究了谷胱甘肽(GSH),过氧化氢酶(CAT),超氧化物歧化酶(SOD)和谷胱甘肽S-转移酶(GST),以完成一组对敏感性和特异性不同的生物标志物。提出C. gibbosa作为定点物种。以乙酰基硫代胆碱为底物获得最高的比活性,其次是丙酰基硫代胆碱(与乙酰基硫代胆碱相比为83%)和丁酰基硫代胆碱(19%)。用乙酰硫胆碱获得最低的K m 和最高的ChE效率。关于CE的活性,丁酸对硝基苯酯比乙酸对硝基苯酯获得更高的效率。 Eserine产生了显着的ChE活性抑制作用(0.001 mM时为81%,1 mM时为98%),而iso-OMPA对ChE则没有任何显着影响。我们的结果表明,长臂梭菌ChE对谷硫磷(CI 50 0.02 micro g L -1 )非常敏感,而CE在较高浓度下(CI 50 > 50 1000微克L -1 )。据报道,在大多数保护生物免受神经毒性影响的水生无脊椎动物中,CE比ChE对OP更敏感。相比之下,C。gibbosa的ChE较之于CE,其对谷硫磷的敏感性更高,并显示出明显的神经毒性迹象。在抗氧化剂防御方面,谷胱甘肽水平显着提高了0.02和20微克L -1 谷硫磷(分别为80和103%),CAT活性仅在0.02微克L <下增加了85%。 sup> -1 和SOD和GST没有显示任何明显的反应。由于ChE的活性,神经毒性迹象,GSH和CAT是在环境浓度C. gibbosa急性暴露于谷硫磷的敏感生物标志物。在阿根廷和智利,杀虫剂危害监测计划中可以将其作为定点物种。

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