Centre for the Research and Technology of Agro-Environmental and Biological Sciences, CITAB and Inov4Agro, Institute for Innovation, Capacity Building and Sustainability of Agri-food Production, Quinta de Prados, Vila Real 5000-801, Portugal; University of Trás-os-Montes and Alto Douro, Quinta de Prados, Vila Real 5000-801, Portugal.
Centre for the Research and Technology of Agro-Environmental and Biological Sciences, CITAB and Inov4Agro, Institute for Innovation, Capacity Building and Sustainability of Agri-food Production, Quinta de Prados, Vila Real 5000-801, Portugal; University of Trás-os-Montes and Alto Douro, Quinta de Prados, Vila Real 5000-801, Portugal.
Ecotoxicol Environ Saf. 2022 Sep 1;242:113926. doi: 10.1016/j.ecoenv.2022.113926. Epub 2022 Aug 2.
The knowledge regarding the neurological and behavioral toxic effects associated with microplastics (MPs) and heavy metals exposure is still scarce. The present study aimed to evaluate the potential chronic (30 days) toxic effects of MPs (2 mg/L) and copper (Cu, 25 µg/L), alone or combined, in the zebrafish (Danio rerio) brain antioxidant system, cell proliferation/death, cholinergic-, serotonergic- and dopaminergic pathways and, consequently, in locomotor, anxiety, and social behaviors. Our findings showed that MPs and Cu exposure modulated the antioxidant system of zebrafish brain, with superoxide dismutase (SOD) and glutathione reductase (GR) having higher activity in the Cu25 +MPs group, but glutathione peroxidase (GPx) being inhibited in MPs, Cu25 and Cu25 +MPs. Moreover, an increase in acetylcholinesterase (AChE) activity was observed in all exposed groups. When considering neurogenesis genes, a downregulation of proliferating cell nuclear antigen (pcna) was noticed in zebrafish exposed to the mixture treatment, while for dopaminergic system-related genes (th and slc6a3) an upregulation was observed in MPs, Cu25 and Cu25 +MPs groups. An increase in apoptosis-related genes expression (casp8, casp9 and casp3) was observed in the MPs exposed group. Changes in zebrafish behavior, particularly in mean speed, total distance moved, inactivity in the aquaria, and social/shoaling behavior was also observed in the MPs and Cu exposed groups. Overall, our results highlight the multiplicity of toxic effects of MPs, alone or combined with Cu, in zebrafish brain, namely apoptosis and alterations in adult neurogenesis, neurocircuits and, consequently, behavior.
有关微塑料 (MPs) 和重金属暴露引起的神经和行为毒性效应的知识仍然有限。本研究旨在评估 MPs(2 mg/L)和铜 (Cu,25 µg/L) 单独或联合暴露 30 天对斑马鱼大脑抗氧化系统、细胞增殖/死亡、胆碱能、血清素能和多巴胺能途径的潜在慢性毒性作用,以及对运动、焦虑和社交行为的影响。我们的研究结果表明,MPs 和 Cu 暴露会调节斑马鱼大脑的抗氧化系统,Cu25+MPs 组中超氧化物歧化酶 (SOD) 和谷胱甘肽还原酶 (GR) 的活性较高,而 MPs、Cu25 和 Cu25+MPs 组中的谷胱甘肽过氧化物酶 (GPx) 受到抑制。此外,所有暴露组的乙酰胆碱酯酶 (AChE) 活性均升高。在考虑神经发生基因时,发现混合物处理组的增殖细胞核抗原 (pcna) 下调,而多巴胺能系统相关基因 (th 和 slc6a3) 在 MPs、Cu25 和 Cu25+MPs 组中上调。凋亡相关基因 (casp8、casp9 和 casp3) 的表达在暴露于 MPs 的鱼类中增加。在暴露于 MPs 和 Cu 的鱼类中也观察到行为的变化,特别是平均速度、总移动距离、在水族箱中的不活动以及社交/集群行为。总的来说,我们的结果强调了 MPs 单独或与 Cu 联合暴露对斑马鱼大脑的多种毒性作用,包括凋亡和成年神经发生、神经回路的改变,以及行为的改变。