Gao Cuimei, Xu Baohong, Li Zhongyuan, Wang Zhuoman, Huang Siqi, Jiang Zijian, Gong Xiaomin, Yang Huilin
College of Environment & Ecology, Hunan Agricultural University, Changsha, 410128, Hunan, China; Team of High Value Utilization of Crop Ecology, Yuelushan Laboratory, Changsha, 410128, Hunan, China; Hunan Provincial Key Laboratory of Rural Ecosystem Health in Dongting Lake Area, Changsha, 410128, Hunan, China.
College of Fisheries, Hunan Agricultural University, Changsha, 410128, Hunan, China.
Aquat Toxicol. 2025 Feb;279:107242. doi: 10.1016/j.aquatox.2025.107242. Epub 2025 Jan 6.
The detrimental impact of emerging pollutants, specifically microplastics (MPs), on the ecological environment are receiving increasing attention. Freshwater ecosystems serve as both repositories for terrestrial microplastic (MP) sources and conduits for their subsequent entry into marine environments. Consequently, it is imperative to rigorously investigate the toxicological effects of MPs on freshwater ecosystems. This article provides a comprehensive analysis of the ecological toxicity effects of MP pollution, both in isolation and in combination with other pollutants, on freshwater aquatic organisms, including plankton, benthic organisms, and fish. The review elucidates potential mechanisms underlying these effects, which encompass oxidative stress, metabolic disorders, immune and inflammatory responses, dysbiosis of the gut microbiota, DNA damage, and cell apoptosis. This paper advocates for the integrated application of multi-omics technologies to investigate the molecular mechanisms underlying the toxicity of MPs to freshwater aquatic organisms from interdisciplinary and multifaceted perspectives. Additionally, it emphasizes the importance of enhancing research on the compounded pollution effects arising from various pollution modes, particularly in conjunction with other pollutants. This study aims to establish a foundation for assessing the ecological risks posed by MPs in freshwater ecosystem and offers valuable insights for the protection of aquatic biodiversity and ecosystem stability.
新兴污染物,特别是微塑料(MPs),对生态环境的有害影响正受到越来越多的关注。淡水生态系统既是陆地微塑料(MP)来源的储存库,也是其随后进入海洋环境的通道。因此,必须严格调查微塑料对淡水生态系统的毒理学影响。本文全面分析了微塑料污染单独以及与其他污染物联合对淡水水生生物(包括浮游生物、底栖生物和鱼类)的生态毒性效应。该综述阐明了这些效应背后的潜在机制,包括氧化应激、代谢紊乱、免疫和炎症反应、肠道微生物群失调、DNA损伤和细胞凋亡。本文主张综合应用多组学技术,从跨学科和多方面的角度研究微塑料对淡水水生生物毒性的分子机制。此外,它强调加强对各种污染模式,特别是与其他污染物联合产生的复合污染效应研究的重要性。本研究旨在为评估微塑料在淡水生态系统中构成的生态风险奠定基础,并为保护水生生物多样性和生态系统稳定性提供有价值的见解。