草甘膦和草甘膦除草剂诱导网状水蛭在共暴露于氧化铁纳米颗粒(y-Fe2O3)期间和之后维持氧化还原平衡

IF 4.1 2区 环境科学与生态学 Q1 MARINE & FRESHWATER BIOLOGY
João Marcos de Lima Faria , Mariana Morozesk , Iara da Costa Souza , Victória Costa da Silva , Luiz Arthur Mendes Bataus , Simone Maria Teixeira de Sabóia-Morais , Marisa Narciso Fernandes
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引用次数: 0

摘要

氧化铁纳米颗粒(IONPs)由于其表面吸附草甘膦(GLY)等污染物的能力,越来越被认为是环境修复的可行材料。然而,与GLY相关的IONPs的生态毒理学影响需要进行彻底的评估,以确定这种修复策略的安全性。在此背景下,本研究旨在检测与氧化还原系统相关的肝脏生物标志物,以及网状水蛭在暴露于环境相关浓度的离子、铁离子(Fe)、纯草甘膦(GLY)以及商业草甘膦除草剂(GBH) 21天后肝脏超微结构的变化。暴露后,这些鱼在未受污染的水中恢复了21天。结果表明,IONP+GBH和IONP+GLY处理动物过氧化氢酶(CAT)和谷胱甘肽s -转移酶(GST)活性和谷胱甘肽(GSH)浓度均升高。这种生化反应在暴露和恢复阶段都持续存在。同时,肝细胞显示线粒体电子密度增加,脂滴积聚增加,肝组织内坏死区域扩大。相比之下,在整个研究时间内,仅暴露于IONPs的鱼表现出持续的氧化还原稳态。这些结果表明,IONP+GLY和IONP+GBH的共暴露毒性可归因于IONP上吸附的物质,并且在整个研究期间,网状假丝藤可以保持活跃的抗氧化防御机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Glyphosate and glyphosate-based herbicides induce Poecilia reticulata to maintain redox equilibrium during and after coexposure to iron oxide nanoparticles (y-Fe2O3)

Glyphosate and glyphosate-based herbicides induce Poecilia reticulata to maintain redox equilibrium during and after coexposure to iron oxide nanoparticles (y-Fe2O3)
Iron oxide nanoparticles (IONPs) are being increasingly recognized as viable materials for environmental remediation due to their capacity to adsorb contaminants such as glyphosate (GLY) on their surfaces. Nevertheless, the ecotoxicological implications of IONPs associated with GLY necessitate thorough evaluation to ascertain the safety of such remediation strategies. In this context, the present investigation was conducted to examine hepatic biomarkers pertinent to the redox system, as well as ultrastructural hepatic alterations in Poecilia reticulata, following a 21-day exposure to environmentally relevant concentrations of IONPs, iron ions (Fe), and glyphosate in its pure form (GLY) as well as a commercial glyphosate-based herbicide (GBH). After this exposure, the fish underwent a 21-day recovery in uncontaminated water. The results indicated an increase in the activity of catalase (CAT) and glutathione S-transferase (GST) and in the concentration of glutathione (GSH) in the animals subjected to IONP+GBH and IONP+GLY treatments. This biochemical response persisted for the duration of both the exposure and recovery phases. Concurrently, hepatocytes displayed mitochondria with increased electron density, augmented lipid droplet accumulation, and expanded necrotic areas within the hepatic tissue. In contrast, fish exposed solely to IONPs exhibited sustained redox homeostasis throughout the investigative timeline. These findings suggest that the coexposure toxicity of IONP+GLY and IONP+GBH is attributable to the agent adsorbed onto the IONPs and that P. reticulata could maintain an active antioxidant defense mechanism throughout the entire study period.
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来源期刊
Aquatic Toxicology
Aquatic Toxicology 环境科学-毒理学
CiteScore
7.10
自引率
4.40%
发文量
250
审稿时长
56 days
期刊介绍: Aquatic Toxicology publishes significant contributions that increase the understanding of the impact of harmful substances (including natural and synthetic chemicals) on aquatic organisms and ecosystems. Aquatic Toxicology considers both laboratory and field studies with a focus on marine/ freshwater environments. We strive to attract high quality original scientific papers, critical reviews and expert opinion papers in the following areas: Effects of harmful substances on molecular, cellular, sub-organismal, organismal, population, community, and ecosystem level; Toxic Mechanisms; Genetic disturbances, transgenerational effects, behavioral and adaptive responses; Impacts of harmful substances on structure, function of and services provided by aquatic ecosystems; Mixture toxicity assessment; Statistical approaches to predict exposure to and hazards of contaminants The journal also considers manuscripts in other areas, such as the development of innovative concepts, approaches, and methodologies, which promote the wider application of toxicological datasets to the protection of aquatic environments and inform ecological risk assessments and decision making by relevant authorities.
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