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新兴的药品对水生态系统影响的挑战:从硅藻的角度看。

Emerging challenges of the impacts of pharmaceuticals on aquatic ecosystems: A diatom perspective.

机构信息

Unit for Environmental Sciences and Management, North-West University, Private bag X6001, Potchefstroom 2520, South Africa.

Geography and Environment, Loughborough University, Loughborough LE11 3TU, UK.

出版信息

Sci Total Environ. 2023 Jun 20;878:162939. doi: 10.1016/j.scitotenv.2023.162939. Epub 2023 Mar 17.

Abstract

Pharmaceuticals are a ubiquitous group of emerging pollutants of considerable importance due to their biological potency and potential to elicit effects in wildlife and humans. Pharmaceuticals have been quantified in terrestrial, marine, fresh, and transitional waters, as well as the fauna and macro-flora that inhabit them. Pharmaceuticals can enter water ways through different human and veterinary pathways with traditional wastewater treatment, unable to completely remove pharmaceuticals, discharging often unknown quantities to aquatic ecosystems. However, there is a paucity of available information regarding the effects of pharmaceuticals on species at the base of aquatic food webs, especially on phytoplankton, with research typically focussing on fish and aquatic invertebrates. Diatoms are one of the main classes of phytoplankton and are some of the most abundant and important organisms in aquatic systems. As primary producers, diatoms generate ∼40 % of the world's oxygen and are a vital food source for primary consumers. Diatoms can also be used for bioremediation of polluted water bodies but perhaps are best known as bio-indicators for water quality studies. However, this keystone, non-target group is often ignored during ecotoxicological studies to assess the effects of pollutants of concern. Observed effects of pharmaceuticals on diatoms have the potential to be used as an indicator of pharmaceutical-induced impacts on higher trophic level organisms and wider ecosystem effects. The aim of this review is to present a synthesis of research on pharmaceutical exposure to diatoms, considering ecotoxicity, bioremediation and the role of diatoms as bio-indicators. We highlight significant omissions and knowledge gaps which need addressing to realise the potential role of diatoms in future risk assessment approaches and help evaluate the impacts of pharmaceuticals in the aquatic environment at local and global scales.

摘要

药品是一组普遍存在的新兴污染物,具有重要意义,因为它们具有生物效力,并有可能对野生动物和人类产生影响。药品已在陆地、海洋、淡水和过渡水域以及栖息在这些水域中的动物区系和大型植物中进行了量化。药品可以通过不同的人类和兽医途径进入水道,而传统的废水处理无法完全去除药品,经常将未知数量的药品排放到水生生态系统中。然而,关于药品对水生食物网底层物种的影响,特别是对浮游植物的影响,相关信息非常有限,研究通常集中在鱼类和水生无脊椎动物上。硅藻是浮游植物的主要类群之一,是水生系统中最丰富和最重要的生物之一。作为初级生产者,硅藻产生了世界上约 40%的氧气,是初级消费者的重要食物来源。硅藻还可用于受污染水体的生物修复,但作为水质研究的生物指标可能更为人所知。然而,在评估有关污染物的影响的生态毒理学研究中,这个关键的非目标群体通常被忽略。观察到药品对硅藻的影响有可能被用作指示药品对更高营养级生物和更广泛生态系统影响的指标。本综述的目的是综合研究药品对硅藻的暴露情况,同时考虑到生态毒性、生物修复以及硅藻作为生物指标的作用。我们强调了需要解决的重大遗漏和知识差距,以实现硅藻在未来风险评估方法中的潜在作用,并帮助评估药品在地方和全球范围内对水生环境的影响。

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