From marine to freshwater environment: A review of the ecotoxicological effects of microplastics

微塑料 有机体 水生生态系统 生物 淡水生态系统 营养水平 水蚤 生态学 食物链 海洋生态系统 大型水蚤 水生环境 生态毒性 生态系统 毒性 浮游动物 化学 有机化学 古生物学
作者
Xiaowei Li,Yiqing Chen,Shujing Zhang,Yuling Dong,Qiuxiang Pang,Iseult Lynch,Changjian Xie,Zhiling Guo,Peng Zhang
出处
期刊:Ecotoxicology and Environmental Safety [Elsevier]
卷期号:251: 114564-114564 被引量:77
标识
DOI:10.1016/j.ecoenv.2023.114564
摘要

Microplastics (MPs) have been widely detected in the world's water, which may pose a significant threat to the ecosystem as a whole and have been a subject of much attention because their presence impacts seas, lakes, rivers, and even the Polar Regions. There have been numerous studies that report direct adverse effects on marine organisms, but only a few have explored their ecological effects on freshwater organisms. In this field, there is still a lack of a systematic overview of the toxic effects and mechanisms of MPs on aquatic organisms, as well as a consistent understanding of the potential ecological consequences. This review describes the fate and impact on marine and freshwater aquatic organisms. Further, we examine the toxicology of MPs in order to uncover the relationship between aquatic organism responses to MPs and ecological disorders. In addition, an overview of the factors that may affect the toxicity effects of MPs on aquatic organisms was presented along with a brief examination of their identification and characterization. MPs were discussed in terms of their physicochemical properties in relation to their toxicological concerns regarding their bioavailability and environmental impact. This paper focuses on the progress of the toxicological studies of MPs on aquatic organisms (bacteria, algae, Daphnia, and fish, etc.) of different trophic levels, and explores its toxic mechanism, such as behavioral alternations, metabolism disorders, immune response, and poses a threat to the composition and stability of the ecosystem. We also review the main factors affecting the toxicity of MPs to aquatic organisms, including direct factors (polymer types, sizes, shapes, surface chemistry, etc.) and indirect factors (persistent organic pollutants, heavy metal ions, additives, and monomer, etc.), and the future research trends of MPs ecotoxicology are also pointed out. The findings of this study will be helpful in guiding future marine and freshwater rubbish studies and management strategies.

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