Bioavailability quantification and uptake mechanisms of pyrene associated with different-sized microplastics to Daphnia magna

微塑料 水蚤 化学 环境化学 生物浓缩 生物利用度 大型水蚤 苯并(a)芘 生物累积 持久性有机污染物 环境科学 苯并芘 毒性 污染物 污染 生态学 浮游动物 有机化学 药理学 生物 生物信息学
作者
Hui Lin,Yinqiu Yuan,Xiaohui Jiang,Jian‐Ping Zou,Xinghui Xia,Shenglian Luo
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:797: 149201-149201 被引量:13
标识
DOI:10.1016/j.scitotenv.2021.149201
摘要

Microplastics (MPs) are the significant environmental factor for bioavailability of hydrophobic organic contaminants (HOCs) in aquatic environments. Nevertheless, the bioavailability of microplastic-associated HOCs remains unclear. In this research, the freely dissolved pyrene concentrations were kept stable with passive dosing devices, and the pyrene content in D. magna tissues as well as D. magna immobilization were analyzed to quantify bioavailability of pyrene (a representative HOC) associated with naturally-aged polystyrene (PS) MPs. Furthermore, the uptake mechanisms of pyrene associated with MPs of different sizes were explored by investigating the distribution of MPs in D. magna tissues with scanning electron microscopy. Especially, a new schematic model of bioavailability process was established. The results demonstrated that a part of pyrene associated with 0–1.5 μm MPs could directly cross cell membrane through endocytosis from intestine and exposure solutions to D. magna tissues except the 10–60 and 60–230 μm MPs. The bioavailability of microplastic-associated pyrene was ordered as 0–1.5 μm (20.0–21.6%) > 10–60 μm (10.7–13.8%) > 60–230 μm MPs (6.0–9.8%), which were essentially resulted from the difference in uptake mechanisms of pyrene associated with MPs of different sizes. This work suggests that the bioavailability of microplastic-associated HOCs should be considered when assessing water quality and environmental risk of HOCs in natural waters.
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