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长期处于金属胁迫下的水蚤体内的生化生物标志物。

Biochemical biomarkers in chronically metal-stressed daphnids.

作者信息

Jemec Anita, Tisler Tatjana, Drobne Damjana, Sepcić Kristina, Jamnik Polona, Ros Milenko

机构信息

National Institute of Chemistry, Hajdrihova 19, SI-1000 Ljubljana, Slovenia.

出版信息

Comp Biochem Physiol C Toxicol Pharmacol. 2008 Jan;147(1):61-8. doi: 10.1016/j.cbpc.2007.07.006. Epub 2007 Aug 1.

Abstract

Biochemical biomarkers are a popular measure of toxic effects on organisms due to their assumed fast response, and are usually assessed after acute exposure of the organism to the stressor. However, increasing interest in the use of biochemical biomarkers in environmental pollution monitoring calls for more laboratory long-term studies of contaminants' effects on biochemical endpoints. In this study, four biochemical biomarkers (protein content, activity of cholinesterase (ChE), catalase (CAT) and glutathione S-transferase (GST), were correlated with standardised reproductive and survival endpoints of water fleas (Daphnia magna) after chronic exposure to Cr (VI) and Cd. No effect on the reproduction and survival was noticed up to the highest tested concentration of Cr (VI) (52.5 microg/L), while the protein content, and the ChE and CAT activity decreased, and GST activity increased. Cd affected reproduction of daphnids above 0.656 microg/L, but the protein content and ChE activity were changed at 0.328 microg/L and 0.082 microg/L of Cd, respectively. Biochemical biomarkers in some cases proved to be equally or more sensitive than reproduction and mortality. We recommend more frequent use of a battery of biochemical biomarkers in combination with other higher-level biomarkers also in chronic studies and not only in the acute ones.

摘要

生化生物标志物因其假定的快速响应而成为衡量生物体毒性效应的常用指标,通常在生物体急性暴露于应激源后进行评估。然而,在环境污染监测中对生化生物标志物使用的兴趣日益增加,这就需要对污染物对生化终点的影响进行更多的实验室长期研究。在本研究中,将四种生化生物标志物(蛋白质含量、胆碱酯酶(ChE)、过氧化氢酶(CAT)和谷胱甘肽S-转移酶(GST)的活性)与水蚤(大型溞)在长期暴露于六价铬(Cr(VI))和镉(Cd)后的标准化生殖和生存终点进行了关联。在最高测试浓度的六价铬(52.5微克/升)下,未观察到对生殖和生存的影响,而蛋白质含量、ChE和CAT活性下降,GST活性增加。镉在浓度高于0.656微克/升时影响水蚤的繁殖,但蛋白质含量和ChE活性分别在镉浓度为0.328微克/升和0.082微克/升时发生变化。在某些情况下,生化生物标志物被证明与生殖和死亡率一样敏感或更敏感。我们建议在慢性研究中,不仅在急性研究中,更频繁地使用一系列生化生物标志物,并结合其他更高层次的生物标志物。

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