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浮游甲壳动物属中微塑料和纳米塑料研究的复杂性——研究变异性的系统评价和固定化率的荟萃分析。

The complexity of micro- and nanoplastic research in the genus Daphnia - A systematic review of study variability and a meta-analysis of immobilization rates.

机构信息

Animal Ecology I, University of Bayreuth, Bayreuth, Germany.

Animal Ecology I, University of Bayreuth, Bayreuth, Germany; Bayreuth Center for Ecology and Environmental Research (BayCEER), Bayreuth, Germany.

出版信息

J Hazard Mater. 2023 Sep 15;458:131839. doi: 10.1016/j.jhazmat.2023.131839. Epub 2023 Jun 13.

Abstract

In recent years, the number of publications on nano- and microplastic particles (NMPs) effects on freshwater organisms has increased rapidly. Freshwater crustaceans of the genus Daphnia are widely used in ecotoxicological research as model organisms for assessing the impact of NMPs. However, the diversity of experimental designs in these studies makes conclusions about the general impact of NMPs on Daphnia challenging. To approach this, we systematically reviewed the literature on NMP effects on Daphnia and summarized the diversity of test organisms, experimental conditions, NMP properties and measured endpoints to identify gaps in our knowledge of NMP effects on Daphnia. We use a meta-analysis on mortality and immobilization rates extracted from the compiled literature to illustrate how NMP properties, study parameters and the biology of Daphnia can impact outcomes in toxicity bioassays. In addition, we investigate the extent to which the available data can be used to predict the toxicity of untested NMPs based on the extracted parameters. Based on our results, we argue that focusing on a more diverse set of NMP properties combined with a more detailed characterization of the particles in future studies will help to fill current research gaps, improve predictive models and allow the identification of NMP properties linked to toxicity.

摘要

近年来,关于纳米和微塑料颗粒(NMPs)对淡水生物影响的出版物数量迅速增加。淡水甲壳类动物属水蚤被广泛用于生态毒理学研究,作为评估 NMPs 影响的模式生物。然而,这些研究中实验设计的多样性使得对 NMPs 对水蚤的一般影响的结论具有挑战性。为了解决这个问题,我们系统地回顾了关于 NMP 对水蚤影响的文献,并总结了测试生物、实验条件、NMP 特性和测量终点的多样性,以确定我们对 NMP 对水蚤影响的知识差距。我们使用从汇编文献中提取的死亡率和固定率的荟萃分析来说明 NMP 特性、研究参数和水蚤生物学如何影响毒性生物测定的结果。此外,我们还研究了根据提取的参数,现有数据在多大程度上可以用于预测未测试 NMP 的毒性。基于我们的结果,我们认为,在未来的研究中,关注更广泛的 NMP 特性集,并更详细地描述颗粒的特性,将有助于填补当前的研究空白,改进预测模型,并确定与毒性相关的 NMP 特性。

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