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有机物对水生食物链中银纳米颗粒营养传递的影响。

Effect of organic matter on the trophic transfer of silver nanoparticles in an aquatic food chain.

机构信息

School of Space and Environment, Beihang University, Beijing 100191, PR China.

School of Space and Environment, Beihang University, Beijing 100191, PR China; Beijing Advanced Innovation Center for Big Data-Based Precision Medicine, Beihang University, Beijing 100191, PR China.

出版信息

J Hazard Mater. 2022 Sep 15;438:129521. doi: 10.1016/j.jhazmat.2022.129521. Epub 2022 Jul 4.

Abstract

The behavior and toxicity of nanoparticles could be affected significantly by the ubiquitous natural organic matter (NOM) in aquatic environments. However, the influence of NOM on nanoparticles along the food chain remains largely unknown. This study constructed bacteria Escherichia coli (E. coli) - protozoa Tetrahymena thermophila (T. thermophila) to evaluate the influence of NOM on the bioaccumulation, trophic transfer and toxicity of silver nanoparticles (Ag NPs). Results demonstrated that NOM could reduce the toxicity of Ag NPs to E. coli and T. thermophila by different influence mechanisms (e.g., reduce Ag NPs accumulation or complex with dissolved silver ion (Ag)) which related to the type of NOM and organisms. Moreover, Ag NPs can be transferred and biomagnified to T. thermophila via trophic transfer. Three typical NOM could significantly increase the trophic transfer factors of Ag NPs ranging from 1.16 to 2.49, which may be ascribed to NOM reducing the capacity for T. thermophila to excrete total silver (Ag) as NOM could significantly change the form of Ag. These findings provide a novel insight into the impact of NOM on the ecological risk posed by Ag NPs through the food chain and emphasize the need to understand further the interactions between nanoparticles and NOM in various ecosystems.

摘要

在水生环境中,普遍存在的天然有机物(NOM)会显著影响纳米颗粒的行为和毒性。然而,NOM 对食物链中纳米颗粒的影响在很大程度上尚不清楚。本研究构建了细菌大肠杆菌(E. coli)-原生动物嗜热四膜虫(T. thermophila),以评估 NOM 对银纳米颗粒(Ag NPs)的生物累积、营养传递和毒性的影响。结果表明,NOM 可以通过不同的影响机制(例如,减少 Ag NPs 的积累或与溶解银离子(Ag)络合)来降低 Ag NPs 对 E. coli 和 T. thermophila 的毒性,这与 NOM 的类型和生物体有关。此外,Ag NPs 可以通过营养传递转移并生物放大到嗜热四膜虫中。三种典型的 NOM 可显著增加 Ag NPs 的营养传递因子,范围从 1.16 到 2.49,这可能归因于 NOM 降低了嗜热四膜虫排泄总银(Ag)的能力,因为 NOM 可以显著改变 Ag 的形态。这些发现为通过食物链研究 NOM 对 Ag NPs 生态风险的影响提供了新的视角,并强调需要进一步了解纳米颗粒和 NOM 在各种生态系统中的相互作用。

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