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Aquatic ecotoxicity of pharmaceuticals including the assessment of combination effects.

机译:药物的水生生态毒性,包括联合作用评估。

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摘要

To evaluate the ecotoxicological potential of ten prescription drugs against aquatic organisms from different taxonornical classes, a set of biotests were performed using the cladoceran Daphnia magna, the chlorophyte Desmodesmus subspicatus and the macrophyte Lemna minor. Endpoints were immobilisation for Daphnia and inhibition of the average growth rate for Desmodesmus and Lemna. For most of the substances, toxicities were moderate, with EC(50)s in the range from 10 to 100 mgl(-1) or even far above, whereas Lemna was the most sensitive test species in the majority of all tested compounds. Tests with combinations of various pharmaceuticals revealed stronger effects than expected from the effects measured singly. Clofibrinic acid and Carbamazepine have been found to act by a non-specific mode of action (non-polar narcosis), and with Daphnia the combination effect of these substances followed the concept of concentration addition, while in the algae test the concept of independent action could be used tocalculate the mixture toxicity. The anti-inflammatory drugs Diclofenac and Ibuprofen have also been found to act unspecific by non-polar narcosis and to follow the concept of concentration addition in the algal test as well as in the Daphnia test. The measured toxicities of the tested pharmaceuticals shows that acute effect of single substances in the aquatic environment are very unlikely. But we should keep in mind that considerable combination effects can occur and that toxicity data from chronic studies are needed to assess the environmental risk of drug residues.
机译:为了评估十种处方药对不同分类生物的水生生物的生态毒理学潜力,使用锁骨Da水蚤,叶绿体Desmodesmus subspicatus和大型水生小Lemna进行了一组生物测试。终点是水蚤的固定化,而Desmodesmus和Lemna的平均增长率受到抑制。对于大多数物质,毒性是中等的,EC(50)s在10至100 mgl(-1)或什至更高的范围内,而Lemna是大多数所有测试化合物中最敏感的测试物种。各种药物组合的测试显示,其效果比单独测量的效果要强。已发现氯纤维蛋白酸和卡马西平可通过非特异性作用方式起作用(非极性麻醉作用),而在水蚤中,这些物质的组合作用遵循浓度加和的概念,而在藻类中则测试了独立作用的概念。可用于计算混合物毒性。还已经发现抗炎药双氯芬酸和布洛芬在非极性麻醉中起非特异性作用,并在藻类试验和水蚤试验中遵循浓度增加的概念。被测药物的毒性测定表明,单一物质在水生环境中不会产生急性影响。但是我们应该记住,可能会发生大量的联合作用,并且需要长期研究的毒性数据来评估药物残留的环境风险。

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