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纳米塑料对淡水食物链的渗透:营养传递和生物影响的研究

Infiltration of freshwater food chain by nanoplastics: An examination of trophic transfer and biological impact.

机构信息

School of Energy and Environment and State Key Laboratory of Marine Pollution, City University of Hong Kong, Kowloon, Hong Kong; Research Centre for the Oceans and Human Health, City University of Hong Kong Shenzhen Research Institute, Shenzhen, 518057, China.

School of Energy and Environment and State Key Laboratory of Marine Pollution, City University of Hong Kong, Kowloon, Hong Kong; Research Centre for the Oceans and Human Health, City University of Hong Kong Shenzhen Research Institute, Shenzhen, 518057, China.

出版信息

Chemosphere. 2023 Dec;345:140541. doi: 10.1016/j.chemosphere.2023.140541. Epub 2023 Oct 27.

Abstract

The contamination of freshwater by nanoplastics (NPs) poses a significant threat to various organisms. However, the influence of food factors on the NPs toxicity and the associated risks to water safety remains poorly understood. In this study, we employed highly fluorescent NPs incorporating aggregation-induced emission fluorogens to quantify and visualize the interactions of NPs with freshwater phytoplanktonic alga Chlamydomonas reinhardtii and zooplankton Daphnia magna, including the uptake of NPs by algae and daphnids, as well as gut environment responses through both waterborne and foodborne routes. NPs at environmentally relevant concentrations were capable of aggregating and internalizing in planktonic algae, thus permeating the food chain and potentially causing ecological risks. Notably, positively charged NPs exhibited greater infiltration than the negatively charged NPs. Our findings indicated that NPs had a greater tendency to accumulate in Daphnia via the food chain rather than through direct exposure to water. This was attributed to the loss of selectivity, suggesting a potential mechanism for NP accumulation in aquatic food chains. However, daphnids exposed to NPs through waterborne route exhibited more gut pH acidification, esterase activity, and gut inflammation compared to those exposed via the foodborne route. Moreover, chronic exposure to NPs through waterborne routes significantly disrupted the growth, molting, and reproduction of Daphnia compared to the foodborne group. These findings provided valuable insights into the complexities of plastic pollution on primary trophic levels in aquatic environments.

摘要

淡水受纳米塑料(NPs)污染对各种生物构成了重大威胁。然而,食物因素对 NPs 毒性的影响以及对水安全的相关风险仍知之甚少。在这项研究中,我们使用了带有聚集诱导发射荧光团的高度荧光 NPs,以量化和可视化 NPs 与淡水浮游植物衣藻和浮游动物大型溞之间的相互作用,包括 NPs 通过水和食物两种途径被藻类和溞类摄取,以及肠道环境的反应。在环境相关浓度下的 NPs 能够在浮游藻类中聚集和内化,从而渗透食物链并可能造成生态风险。值得注意的是,带正电荷的 NPs 比带负电荷的 NPs 更容易渗透。我们的研究结果表明,与直接暴露于水中相比, NPs 通过食物链更容易在大型溞中积累。这归因于选择性的丧失,表明了 NPs 在水生食物链中积累的潜在机制。然而,与通过食物途径暴露的溞类相比,通过水途径暴露于 NPs 的溞类的肠道 pH 值酸化、酯酶活性和肠道炎症更多。此外,与食物暴露组相比,通过水途径慢性暴露于 NPs 显著干扰了大型溞的生长、蜕皮和繁殖。这些发现为了解塑料污染对水生环境中初级营养级的复杂性提供了有价值的见解。

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