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聚乙烯微塑料和乙草胺对斑马鱼(Danio rerio)积累和肠道毒性的单一和联合作用。

Single and combined effects of polyethylene microplastics and acetochlor on accumulation and intestinal toxicity of zebrafish (Danio rerio).

机构信息

Inner Mongolia Key Laboratory of Environmental Pollution Control & Waste Resource Reuse, School of Ecology and Environment, Inner Mongolia University, Hohhot, 010030, China.

Inner Mongolia Key Laboratory of Environmental Pollution Control & Waste Resource Reuse, School of Ecology and Environment, Inner Mongolia University, Hohhot, 010030, China.

出版信息

Environ Pollut. 2023 Sep 15;333:122089. doi: 10.1016/j.envpol.2023.122089. Epub 2023 Jun 24.

Abstract

The co-exposure of microplastics (MPs) and other contaminants has aroused extensive attention, but the combined impacts of MPs and pesticides remain poorly understood. Acetochlor (ACT), a widely used chloroacetamide herbicide, has raised concerns for its potential bio-adverse effects. This study evaluated the influences of polyethylene microplastics (PE-MPs) for acute toxicity, bioaccumulation, and intestinal toxicity in zebrafish to ACT. We found that PE-MPs significantly enhanced ACT acute toxicity. Also, PE-MPs increased the accumulation of ACT in zebrafish and aggravate the oxidative stress damage of ACT in intestines. Exposure to PE-MPs or/and ACT causes mild damage to the gut tissue of zebrafish and altered gut microbial composition. In terms of gene transcription, ACT exposure triggered a significant increase in inflammatory response-related gene expressions in the intestines, while some pro-inflammatory factors were found to be inhibited by PE-MPs. This study provides a new perspective on the fate of MPs in the environment and on the assessment of the combined effects of MPs and pesticides on organisms.

摘要

微塑料(MPs)和其他污染物的共暴露引起了广泛关注,但 MPs 和农药的联合影响仍知之甚少。乙草胺(ACT)是一种广泛使用的氯乙酰胺类除草剂,其潜在的生物不良影响引起了人们的关注。本研究评估了聚乙烯微塑料(PE-MPs)对急性毒性、生物蓄积和斑马鱼中 ACT 的肠道毒性的影响。我们发现 PE-MPs 显著增强了 ACT 的急性毒性。此外,PE-MPs 增加了 ACT 在斑马鱼体内的积累,并加重了 ACT 在肠道中的氧化应激损伤。暴露于 PE-MPs 或/和 ACT 会导致斑马鱼肠道组织轻度损伤,并改变肠道微生物组成。在基因转录方面,ACT 暴露会引发肠道中炎症反应相关基因表达的显著增加,而一些促炎因子被发现受到 PE-MPs 的抑制。本研究为 MPs 在环境中的归宿以及 MPs 和农药对生物体的联合效应评估提供了新的视角。

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