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Effects of chlorothalonil on the antioxidant defense system of mussels Perna perna

机译:氯含钾对贻贝腐败腐败系统抗氧化防御系统的影响

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Chlorothalonil is an effective fungicide used in agriculture and formulations of antifouling paints, which use and possible toxicity has been generating great concern. Thus, the present study investigated the effects of chlorothalonil on the antioxidant defense system (ADS) of the mussel Perna perna. The ADS was evaluated in gills and digestive gland after 24 h and 96 h of exposure to environmental relevant levels of chlorothalonil (0.1 and 10 mu g/L). The activity of the enzymes superoxide dismutase (SOD), catalase (CAT), glutamate cysteine-ligase (GCL) and glutathione S-transferase (GST), levels of non-enzymatic defenses, represented by glutathione (GSH), and lipoperoxidation (LPO) and protein carbonyls (PCO) were evaluated. Results indicated that exposure to chlorothalonil is affecting the ADS in both tissues. While the activity of SOD increased and GST and GSH were not altered in gills, they decreased in digestive gland after 24 h of exposure to 10 mu g/L of chlorothalonil. The contrasting results indicate that gills and digestive gland presented different patterns of responses after exposure to chlorothalonil. Moreover, a tissue-specific response to chlorothalonil was observed. Gills could be acting as the first line of defense, presenting higher enzymatic levels with minor effects on the parameters analyzed. On the other hand, digestive gland, with lower levels of antioxidant defenses, was the most affect organ by chlorothalonil. It also should be highlighted that the fungicide reduced the glutathione metabolism in the digestive gland, which can lead to an imbalance of the redox state within the cells of animals.
机译:氯培洛尼尔是一种有效的杀真菌剂,用于农业和防污涂料的配方,使用和可能的毒性产生了极大的关注。因此,本研究研究了氯培拉洛尼尔对贻贝钙珀纳抗氧化防御系统(ADS)的影响。 24小时后,在腮腺和消化腺中评价广告,96小时暴露于环境相关水平(0.1和10μg/ L)。酶超氧化物歧化酶(SOD),过氧化氢酶(CAT),谷氨酸半胱氨酸 - 分子酶(GCL)和谷胱甘肽S-转移酶(GST),谷胱甘肽(GSH)和脂催化剂(LPO)所代表的非酶促防御水平(LPO评价)和蛋白质羰基(PCO)。结果表明,暴露于氯洛尼洛尼洛在两种组织中的广告。虽然SOD的活性增加和GSH和GSH没有改变在鳃中,但在24小时暴露于10μg/ L氯洛尼洛尼洛尼洛尼洛尼核后,它们在消化腺中减少。对比结果表明鳃和消化腺在暴露于氯洛尼核糖后呈现不同的反应模式。此外,观察到对氯洛尼洛尼尼尔的组织特异性反应。鳃可以作为第一道防线,呈现出更高的酶水平,对分析的参数进行微小影响。另一方面,具有较低水平的抗氧化剂防御物体的消化腺是由氯洛尼尼洛尼的影响最多。它还应该强调杀菌剂降低了消化腺中的谷胱甘肽代谢,这可以导致动物细胞内的氧化还原状态的不平衡。

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