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紫外光老化的微塑料通过影响幼斑马鱼的神经递质传递而导致神经毒性。

UV-aged microplastics induces neurotoxicity by affecting the neurotransmission in larval zebrafish.

机构信息

School of Public Health, Jinzhou Medical University, Jinzhou 121000, Liaoning, China; State Environmental Protection Key Laboratory of Environmental Pollution Health Risk Assessment, South China Institute of Environmental Sciences, Ministry of Ecology and Environment, Guangzhou 510655, China.

School of Environmental and Chemical Engineering, Shanghai University, Shanghai 200444, China.

出版信息

Chemosphere. 2023 May;324:138252. doi: 10.1016/j.chemosphere.2023.138252. Epub 2023 Feb 25.

Abstract

Microplastics (MPs) are nearly ubiquitous in aquatic ecosystems and may affect aquatic organisms. In this study, virgin and aged polystyrene MPs (PS-MPs) of size 1 μm were selected to analyze their adverse effects on larvae zebrafish. Exposure to PS-MPs significantly reduced the average swimming speed of zebrafish, and the behavioral effects caused by aged PS-MPs on zebrafish were more pronounced. Fluorescence microscopy revealed that 10-100 μg/L of PS-MPs accumulated in tissues of zebrafish. As an endpoint of neurotransmitter concentration, exposure to aged PS-MPs at doses ranging from 0.1 to 100 μg/L significantly increased the dopamine (DA), 5-hydroxytryptamine (5-HT), γ-aminobutyric acid (GABA), and acetylcholine (ACh) levels in zebrafish. Similarly, exposure to aged PS-MPs significantly altered the expression of genes related to these neurotransmitters (e.g., dat, 5ht1aa, and gabral genes). According to Pearson correlation analyses, neurotransmissions was significantly correlated with neurotoxic effects of aged PS-MPs. Thus, aged PS-MPs cause neurotoxicity in zebrafish through their effects on DA, 5-HT, GABA, and ACh neurotransmissions. The results highlight the importance of the neurotoxicity of aged PS-MPs in zebrafish, which has important implications for the risk assessment of aged MPs and the conservation of aquatic ecosystems.

摘要

微塑料(MPs)几乎普遍存在于水生生态系统中,可能会对水生生物产生影响。在本研究中,选择了原始和老化的聚苯乙烯 MPs(PS-MPs),尺寸为 1 μm,以分析它们对斑马鱼幼虫的不良影响。暴露于 PS-MPs 显著降低了斑马鱼的平均游泳速度,并且老化 PS-MPs 对斑马鱼产生的行为影响更为明显。荧光显微镜显示,10-100 μg/L 的 PS-MPs 积聚在斑马鱼的组织中。作为神经递质浓度的终点,暴露于 0.1 至 100 μg/L 的老化 PS-MPs 显著增加了斑马鱼中的多巴胺(DA)、5-羟色胺(5-HT)、γ-氨基丁酸(GABA)和乙酰胆碱(ACh)水平。同样,暴露于老化 PS-MPs 也显著改变了与这些神经递质相关的基因的表达(例如,dat、5ht1aa 和 gabral 基因)。根据 Pearson 相关分析,神经递质传递与老化 PS-MPs 的神经毒性作用显著相关。因此,老化 PS-MPs 通过对 DA、5-HT、GABA 和 ACh 神经递质传递的影响导致斑马鱼产生神经毒性。研究结果强调了老化 PS-MPs 对斑马鱼神经毒性的重要性,这对老化 MPs 的风险评估和水生生态系统的保护具有重要意义。

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