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气候变化时代下,评估升温与酸化效应对水生生物的药物毒性的影响。

Review of warming and acidification effects to the ecotoxicity of pharmaceuticals on aquatic organisms in the era of climate change.

机构信息

University of Gdansk, Faculty of Chemistry, Department of Environmental Analysis, ul. Wita Stwosza 63, 80-308 Gdańsk, Poland.

University of Gdansk, Faculty of Chemistry, Department of Environmental Analysis, ul. Wita Stwosza 63, 80-308 Gdańsk, Poland.

出版信息

Sci Total Environ. 2023 Jun 15;877:162829. doi: 10.1016/j.scitotenv.2023.162829. Epub 2023 Mar 14.

Abstract

An increase in the temperature and the acidification of the aquatic environment are among the many consequences of global warming. Climate change can also negatively affect aquatic organisms indirectly, by altering the toxicity of pollutants. Models of climate change impacts on the distribution, fate and ecotoxicity of persistent pollutants are now available. For pharmaceuticals, however, as new environmental pollutants, there are no predictions on this issue. Therefore, this paper organizes the existing knowledge on the effects of temperature, pH and both stressors combined on the toxicity of pharmaceuticals on aquatic organisms. Besides lethal toxicity, the molecular, physiological and behavioral biomarkers of sub-lethal stress were also assessed. Both acute and chronic toxicity, as well as bioaccumulation, were found to be affected. The direction and magnitude of these changes depend on the specific pharmaceutical, as well as the organism and conditions involved. Unfortunately, the response of organisms was enhanced by combined stressors. We compare the findings with those known for persistent organic pollutants, for which the pH has a relatively low effect on toxicity. The acid-base constant of molecules, as assumed, have an effect on the toxicity change with pH modulation. Studies with bivalves have been were overrepresented, while too little attention was paid to producers. Furthermore, the limited number of pharmaceuticals have been tested, and metabolites skipped altogether. Generally, the effects of warming and acidification were rather indicated than explored, and much more attention needs to be given to the ecotoxicology of pharmaceuticals in climate change conditions.

摘要

温度升高和水生环境酸化是全球变暖的众多后果之一。气候变化也可以通过改变污染物的毒性间接对水生生物产生负面影响。目前已经有模型可以预测气候变化对持久性污染物的分布、归宿和生态毒性的影响。然而,对于作为新型环境污染物的药品,在这个问题上还没有预测。因此,本文整理了有关温度、pH 值以及这两个压力因素综合作用对水生生物中药物毒性影响的现有知识。除了致死毒性外,还评估了亚致死应激的分子、生理和行为生物标志物。发现急性和慢性毒性以及生物累积都受到了影响。这些变化的方向和幅度取决于特定的药物以及所涉及的生物体和条件。不幸的是,联合压力源增强了生物体的反应。我们将这些发现与已知的持久性有机污染物进行了比较,对于后者,pH 值对毒性的影响相对较低。正如假设的那样,分子的酸碱常数对 pH 值调节引起的毒性变化有影响。双壳类动物的研究占了很大比例,而对生产者的关注则太少。此外,测试的药物种类有限,而且完全忽略了代谢物。总的来说,变暖和酸化的影响只是被暗示,而不是被探索,在气候变化条件下,需要更多地关注药品的生态毒理学。

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