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实验暴露于1,2 - 二氯苯和1,4 - 二氯苯的金鱼藻中的生物转化和抗氧化反应

Biotransformation and antioxidant response in Ceratophyllum demersum experimentally exposed to 1,2- and 1,4-dichlorobenzene.

作者信息

Monferran Magdalena V, Wunderlin Daniel A, Nimptsch Jorge, Pflugmacher Stephan

机构信息

Universidad Nacional de Córdoba, CONICET, Facultad de Ciencias Químicas, Dto. Bioquímica Clínica, CIBICI, Haya de la Torre esq. Medina Allende, Ciudad Universitaria, 5000 Córdoba, Argentina.

出版信息

Chemosphere. 2007 Aug;68(11):2073-9. doi: 10.1016/j.chemosphere.2007.02.016. Epub 2007 Mar 21.

Abstract

We report the effects of 1,2- and 1,4-dichlorobenzene (1,2-DCB and 1,4-DCB) on the aquatic macrophyte Ceratophyllum demersum. We evaluated the response of the antioxidant system through the assay of glutathione reductase (GR), guaiacol peroxidase (POD) and glutathione peroxidase (GPx). Additionally, the effect of DCBs on the detoxication system by measuring the activity of glutathione-S-transferase (GST) was evaluated. C. demersum showed elevated GST activities when exposed to 10 and 20 mg l(-1) 1,2-DCB, and at 10 mg l(-1) for 1,4-DCB. These results show that glutathione conjugation take place at relatively high concentrations of both isomers. Significantly increased activities of POD were also detected in C. demersum exposed to concentrations above 5 mg l(-1) of the corresponding isomer. The GR activity was enhanced in plants exposed to 1,2-DCB (5 mg l(-1)) and 1,4-DCB (10 mg l(-1)). GPx was also significantly increased in exposures to the corresponding isomer, each at a concentration of 10 mg l(-1). However, plants exposed to low doses of 1,4-DCB (1 mg l(-1)) showed significantly decreased activities of both enzymes GR and GPx. Consequently, it is clear that the exposure of the aquatic macrophyte C. demersum to DCBs is able to cause an activation of the antioxidant system, showing an isomer specific pattern, which suggests that the defence system of this plant is playing an important role in scavenging ROS, helping to protect the organism against adverse oxidative effects generated by the prooxidant action of the tested xenobiotics. Furthermore, increased GST activities give indirect evidence on the conjugation of either DCBs or the corresponding metabolites during phase II of detoxication, which supports the elimination process of toxic metabolites from cells of C. demersum.

摘要

我们报告了1,2 - 二氯苯(1,2 - DCB)和1,4 - 二氯苯(1,4 - DCB)对水生大型植物金鱼藻的影响。我们通过测定谷胱甘肽还原酶(GR)、愈创木酚过氧化物酶(POD)和谷胱甘肽过氧化物酶(GPx)来评估抗氧化系统的反应。此外,通过测量谷胱甘肽 - S - 转移酶(GST)的活性来评估二氯苯对解毒系统的影响。当金鱼藻暴露于10和20 mg l(-1)的1,2 - DCB以及10 mg l(-1)的1,4 - DCB时,其GST活性升高。这些结果表明,在两种异构体的相对高浓度下会发生谷胱甘肽结合。在暴露于相应异构体浓度高于5 mg l(-1)的金鱼藻中也检测到POD活性显著增加。暴露于1,2 - DCB(5 mg l(-1))和1,4 - DCB(10 mg l(-1))的植物中GR活性增强。在暴露于相应异构体且浓度均为10 mg l(-1)时,GPx也显著增加。然而,暴露于低剂量1,4 - DCB(1 mg l(-1))的植物中GR和GPx这两种酶的活性均显著降低。因此,很明显水生大型植物金鱼藻暴露于二氯苯能够引起抗氧化系统的激活,呈现出异构体特异性模式,这表明该植物的防御系统在清除活性氧方面发挥着重要作用,有助于保护生物体免受受试异生物质促氧化作用产生的不利氧化影响。此外,GST活性增加间接证明了在解毒第二阶段二氯苯或相应代谢产物的结合,这支持了金鱼藻细胞中有毒代谢产物的消除过程。

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