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首页> 外文期刊>Environmental Science and Pollution Research >Glutathione, glutathione S-transferase, and glutathione conjugates, complementary markers of oxidative stress in aquatic biota
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Glutathione, glutathione S-transferase, and glutathione conjugates, complementary markers of oxidative stress in aquatic biota

机译:谷胱甘肽,谷胱甘肽S-转移酶和谷胱甘肽共轭物,水生生物区系氧化应激的互补标记

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摘要

Contaminants are ubiquitous in the environment and their impacts are of increasing concern due to human population expansion and the generation of deleterious effects in aquatic species. Oxidative stress can result from the presence of persistent organic pollutants, metals, pesticides, toxins, pharmaceuticals, and nanomaterials, as well as changes in temperature or oxygen in water, the examined species, with differences in age, sex, or reproductive cycle of an individual. The antioxidant role of glutathione (GSH), accompanied by the formation of its disulfide dimer, GSSG, and metabolites in response to chemical stress, are highlighted in this review along with, to some extent, that of glutathione S-transferase (GST). The available literature concerning the use and analysis of these markers will be discussed, focusing on studies of aquatic organisms. The inclusion of GST within the suite of biomarkers used to assess the effects of xeno-biotics is recommended to complement that of lipid peroxida-tion and mixed function oxygenation. Combining the analysis of GSH, GSSG, and conjugates would be beneficial in pinpointing the role of contaminants within the plethora of causes that could lead to the toxic effects of reactive oxygen species.
机译:污染物在环境中无处不在,由于人口的增长和对水生物种的有害影响,其影响日益引起人们的关注。氧化应激可能是由于存在持久性有机污染物,金属,农药,毒素,药物和纳米材料,以及被检物种中水中温度或氧气的变化,以及年龄,性别或生殖周期的差异而导致的。个人。在本综述中,谷胱甘肽(GSH)的抗氧化作用以及其二硫化物二聚体,GSSG和代谢产物对化学应激的响应在一定程度上与谷胱甘肽S-转移酶(GST)一起发挥了重要作用。将讨论有关这些标记物的使用和分析的现有文献,重点放在水生生物的研究上。建议将GST纳入用于评估异种生物作用的生物标记物套件中,以补充脂质过氧化作用和混合功能氧合作用。结合GSH,GSSG和结合物的分析将有助于查明污染物在多种可能导致活性氧物质毒性作用的原因中的作用。

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