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溶解有机质对金属纳米材料环境行为及毒性的影响:综述。

Effects of dissolved organic matter on the environmental behavior and toxicity of metal nanomaterials: A review.

机构信息

School of Environment & Ecology, Jiangnan University, Wuxi 214122, China.

School of Environment & Ecology, Jiangnan University, Wuxi 214122, China.

出版信息

Chemosphere. 2024 Jun;358:142208. doi: 10.1016/j.chemosphere.2024.142208. Epub 2024 May 2.

Abstract

Metal nanomaterials (MNMs) have been released into the environment during their usage in various products, and their environmental behaviors directly impact their toxicity. Numerous environmental factors potentially affect the behaviors and toxicity of MNMs with dissolved organic matter (DOM) playing the most essential role. Abundant facts showing contradictory results about the effects of DOM on MNMs, herein the occurrence of DOM on the environmental process change of MNMs such as dissolution, dispersion, aggregation, and surface transformation were summarized. We also reviewed the effects of MNMs on organisms and their mechanisms in the environment such as acute toxicity, oxidative stress, oxidative damage, growth inhibition, photosynthesis, reproductive toxicity, and malformation. The presence of DOM had the potential to reduce or enhance the toxicity of MNMs by altering the reactive oxygen species (ROS) generation, dissolution, stability, and electrostatic repulsion of MNMs. Furthermore, we summarized the factors that affected different toxicity including specific organisms, DOM concentration, DOM types, light conditions, detection time, and production methods of MNMs. However, the more detailed mechanism of interaction between DOM and MNMs needs further investigation.

摘要

金属纳米材料(MNMs)在各种产品中的应用过程中已经释放到环境中,它们的环境行为直接影响其毒性。许多环境因素可能会影响 MNMs 的行为和毒性,其中溶解有机物质(DOM)起着最重要的作用。有大量事实表明 DOM 对 MNMs 的影响结果相互矛盾,因此本文总结了 DOM 对 MNMs 的环境过程变化(如溶解、分散、聚集和表面转化)的影响。我们还综述了 MNMs 在环境中对生物体的影响及其机制,如急性毒性、氧化应激、氧化损伤、生长抑制、光合作用、生殖毒性和畸形。DOM 的存在通过改变 MNMs 的活性氧(ROS)生成、溶解、稳定性和静电排斥,有可能降低或增强 MNMs 的毒性。此外,我们总结了影响不同毒性的因素,包括特定生物体、DOM 浓度、DOM 类型、光照条件、检测时间和 MNMs 的生产方法。然而,DOM 和 MNMs 之间相互作用的更详细机制仍需要进一步研究。

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