School of Resources and Civil Engineering, Northeastern University, Shenyang, 110819, China; School of Resources and Materials, Northeastern University at Qinhuangdao, Qinhuangdao, 066004, China.
Ocean College, Hebei Agriculture University, Qinhuangdao, 066004, China.
Mar Environ Res. 2024 Jun;198:106547. doi: 10.1016/j.marenvres.2024.106547. Epub 2024 May 8.
Micro/nanoplastics in aquatic environments is a noteworthy environmental problem. Zooplankton, an important biological group in aquatic ecosystems, readily absorb micro/nanoplastics and produce a range of toxic endpoints due to their small size. This review summarises relevant studies on the effects of micro/nanoplastics on zooplankton, including combined effects with conventional pollutants. Frequently reported adverse effects include acute/chronic lethal effects, oxidative stress, gene expression, energetic homeostasis, and growth and reproduction. Obstruction by plastic entanglement and blockage is the physical mechanism. Genotoxicity and cytotoxicity are molecular mechanisms. Properties of micro/nanoplastics, octanol/water partition coefficients of conventional pollutants, species and intestinal environments are important factors influencing single and combined toxicity. Selecting a wider range of micro/nanoplastics, focusing on the aging process and conducting field studies, adopting diversified zooplankton models, and further advancing the study of mechanisms are the outstanding prospects for deeper understanding of impacts of micro/nanoplastics on aquatic ecosystem.
微/纳米塑料在水生环境中是一个值得关注的环境问题。浮游动物是水生生态系统中的重要生物类群,由于其体积小,很容易吸收微/纳米塑料,并产生一系列毒性终点。本综述总结了有关微/纳米塑料对浮游动物影响的相关研究,包括与传统污染物的联合效应。经常报道的不良影响包括急性/慢性致死效应、氧化应激、基因表达、能量稳态以及生长和繁殖。塑料缠绕和堵塞是物理机制。遗传毒性和细胞毒性是分子机制。微/纳米塑料的性质、传统污染物的辛醇/水分配系数、物种和肠道环境是影响单一和联合毒性的重要因素。选择更广泛的微/纳米塑料,关注老化过程并进行现场研究,采用多样化的浮游动物模型,进一步深入研究机制,是更深入了解微/纳米塑料对水生生态系统影响的突出前景。