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厚壳贻贝:一种有价值的生物指标物种,可用于了解在变暖条件下双氯芬酸的影响。

Mytilus galloprovincialis: A valuable bioindicator species for understanding the effects of diclofenac under warming conditions.

机构信息

Department of Chemical, Biological, Pharmaceutical and Environmental Sciences, University of Messina, 98166 S. Agata-Messina, Italy.

Veterinary Teaching Hospital, Department of Veterinary Sciences, University of Pisa, 56122 Pisa, Italy.

出版信息

Sci Total Environ. 2024 Oct 10;946:173809. doi: 10.1016/j.scitotenv.2024.173809. Epub 2024 Jun 5.

Abstract

Drugs are chemical compounds used to treat and improve organic dysfunctions caused by diseases. These include analgesics, antibiotics, antidepressants, and antineoplastics. They can enter aquatic environments through wastewater streams, where their physico-chemical properties allow metabolites to distribute and accumulate. Current climate change and associated extreme weather events may significantly impact these substances' toxicity and aquatic organisms' sensitivity. Among the chemicals present in aquatic environments is the non-steroidal anti-inflammatory drug diclofenac (DIC), which the EU monitors due to its concentration levels. This study investigated the influence of temperature (control at 17 °C vs. 21 °C) on the effects of DIC (0 μg/L vs. 1 μg/L) in the mussel species Mytilus galloprovincialis. Significant results were observed between 17 and 21 °C. Organisms exposed to the higher temperature showed a decrease in several parameters, including metabolic capacity and detoxification, particularly with prolonged exposure. However, in some parameters, after 21 days, the M. galloprovincialis showed no differences from the control, indicating adaptation to the stress. The results of this study confirm that DIC concentrations in the environment, particularly when combined with increased temperatures, can produce oxidative stress and adversely affect M. galloprovincialis biochemical and physiological performance. This study also validates this species as a bioindicator for assessing environmental contamination with DIC. Beyond its direct impact on aquatic organisms, the presence of pharmaceuticals like DIC in the environment highlights the interconnectedness of human, animal, and ecosystem health, underscoring the One Health approach to understanding and mitigating environmental pollution.

摘要

药物是用于治疗和改善由疾病引起的有机功能障碍的化学化合物。这些药物包括镇痛药、抗生素、抗抑郁药和抗肿瘤药。它们可以通过废水流进入水生环境,在那里它们的物理化学性质允许代谢物分布和积累。当前的气候变化和相关的极端天气事件可能会显著影响这些物质的毒性和水生生物的敏感性。在水生环境中存在的化学物质之一是非甾体抗炎药双氯芬酸(DIC),由于其浓度水平,欧盟对其进行监测。本研究调查了温度(17°C 对照与 21°C)对贻贝物种贻贝中 DIC(0μg/L 对照与 1μg/L)影响的影响。在 17 和 21°C 之间观察到了显著的结果。暴露在较高温度下的生物表现出几个参数的下降,包括代谢能力和解毒能力,特别是在长时间暴露的情况下。然而,在某些参数中,经过 21 天后,贻贝与对照组没有差异,表明它们适应了压力。本研究的结果证实,环境中的 DIC 浓度,特别是与温度升高结合使用时,会产生氧化应激,对贻贝的生化和生理性能产生不利影响。本研究还验证了该物种作为评估 DIC 环境污染的生物标志物的有效性。除了对水生生物的直接影响外,像 DIC 这样的药物在环境中的存在突显了人类、动物和生态系统健康之间的相互联系,强调了理解和减轻环境污染的“同一健康”方法。

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