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拟除虫菊酯(溴氰菊酯)和新烟碱类(吡虫啉)农药商业制剂对成年斑马鱼的联合神经毒性作用:行为、分子和组织病理学分析

Combined Neurotoxic Effects of Commercial Formulations of Pyrethroid (Deltamethrin) and Neonicotinoid (Imidacloprid) Pesticides on Adult Zebrafish (): Behavioral, Molecular, and Histopathological Analysis.

作者信息

Petrovici Adriana, Savuța Gheorghe, Lucini Carla, Robea Madalina-Andreea, Solcan Carmen

机构信息

Faculty of Veterinary Medicine, "Ion Ionescu de la Brad" Iasi University of Life Sciences (IULS), 8 Mihail Sadoveanu Alley, 700489 Iasi, Romania.

Department of Veterinary Medicine and Animal Production, University of Naples Federico II, 80137 Napoli, Italy.

出版信息

Life (Basel). 2025 Mar 25;15(4):538. doi: 10.3390/life15040538.

Abstract

The use of different commercial products that involve one or multiple active substances with specific targeted-pests control has become a widespread practice. Because of this, a severe range of significant consequences has been often reported. Among the most used pesticides worldwide are deltamethrin (DM) and imidacloprid (IMI). With a significative effect on the insect's nervous system, DM acts on the voltage-gated sodium channels in nerve cell membranes, while IMI mimics the acetylcholine neurotransmitter by binding irreversibly to the nicotinic acetylcholine receptors. This study investigates the neurotoxic effects of sub-chronic exposure to commercial formulations of deltamethrin (DM) and imidacloprid (IMI) in adult zebrafish, both individually and in combination. The formulations used in this study contain additional ingredients commonly found in commercial pesticide products, which may contribute to overall toxicity. Fish were exposed to environmentally relevant concentrations of these pesticides for 21 days, individually or in combination. Behavioral, molecular, and histopathological analyses were conducted to assess the impact of these pesticides. Zebrafish exhibited dose-dependent behavioral alterations, particularly in the combined exposure groups, including increased erratic swimming and anxiety-like behavior. Gene expression analysis revealed significant changes in neurotrophic factors () and their receptors (), indicating potential neurotoxic effects. Histopathological examination confirmed neuronal degeneration, gliosis, and vacuolization, with more severe impairments observed in pesticide mixture treatments. These findings highlight the neurotoxic potential of pesticide formulations in aquatic environments and emphasize the need for stricter regulations on pesticide mixtures and further research on pesticide interactions. Our findings emphasize that the combination of pesticides could trigger a synergistic effect by maximizing the toxicity of each compound. Thus, it is a well-known practice for pyrethroids and neonicotinoids to be used together in agriculture. Even so, its prevalence in agriculture and the need to investigate its actual impact on human health, biodiversity, and ecosystem mitigates the development of new strategies for assessing the risk and, at the same time, enhancing the effectiveness.

摘要

使用含有一种或多种具有特定目标害虫控制活性成分的不同商业产品已成为一种普遍做法。因此,经常有一系列严重后果被报道。在全球使用最广泛的农药中,有溴氰菊酯(DM)和吡虫啉(IMI)。DM对昆虫神经系统有显著影响,作用于神经细胞膜上的电压门控钠通道,而IMI通过不可逆地结合烟碱型乙酰胆碱受体来模拟乙酰胆碱神经递质。本研究调查了成年斑马鱼亚慢性暴露于溴氰菊酯(DM)和吡虫啉(IMI)商业制剂单独及联合使用时的神经毒性作用。本研究中使用的制剂含有商业农药产品中常见的其他成分,这些成分可能会增加总体毒性。将鱼暴露于与环境相关浓度的这些农药中21天,单独或联合暴露。进行了行为、分子和组织病理学分析以评估这些农药的影响。斑马鱼表现出剂量依赖性的行为改变,特别是在联合暴露组,包括不规则游泳增加和类似焦虑的行为。基因表达分析显示神经营养因子及其受体有显著变化,表明存在潜在的神经毒性作用。组织病理学检查证实有神经元变性、胶质增生和空泡化,在农药混合物处理中观察到更严重的损伤。这些发现突出了农药制剂在水生环境中的神经毒性潜力,并强调需要对农药混合物制定更严格的法规以及对农药相互作用进行进一步研究。我们的研究结果强调,农药的组合可能通过使每种化合物的毒性最大化而引发协同效应。因此,拟除虫菊酯和新烟碱类在农业中一起使用是一种常见做法。即便如此,其在农业中的普遍使用以及调查其对人类健康、生物多样性和生态系统实际影响的必要性,促使人们制定新的策略来评估风险,同时提高有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f4c2/12028659/477434410204/life-15-00538-g001.jpg

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