Centre for the Research and Technology of Agro-Environmental and Biological Sciences, CITAB, University of Trás-os-Montes and Alto Douro, Quinta de Prados, 5000-801 Vila Real, Portugal.
Centre for the Research and Technology of Agro-Environmental and Biological Sciences, CITAB, University of Trás-os-Montes and Alto Douro, Quinta de Prados, 5000-801 Vila Real, Portugal.
Comp Biochem Physiol C Toxicol Pharmacol. 2022 Aug;258:109363. doi: 10.1016/j.cbpc.2022.109363. Epub 2022 May 4.
Fish gills are in direct contact with the surrounding pollutants, and thus, potentially more vulnerable to microplastics (MPs) and heavy metals. The present study aimed to evaluate the long-term exposure effects of MPs and copper (Cu) in the gills of adult zebrafish (Danio rerio). To this end, zebrafish were exposed to MPs (2 mg/L), Cu (Cu25, 25 μg/L) and their mixture (Cu25 + MPs) for 30 days, and then oxidative stress, detoxification, antioxidant, metabolic and neurotoxicity enzymes/genes, as well serotonergic system and apoptosis genes, were evaluated in gills. In the mixture group, ROS levels were increased, while CAT and GPx activities were inhibited, indicating the induction of oxidative stress in zebrafish gills. This was followed by an increase of LPO levels and potential oxidative damage in zebrafish gills. The tryptophan hydroxylase 1a (tph1a) and caspase-3 (casp3) genes were significantly upregulated in Cu25 + MPs group, indicating a potential dysregulation of serotonin synthesis and apoptosis pathways, respectively. Overall, the present study contributes to improving the knowledge about the response of aquatic organisms to MPs and the potential ecological risk that these particles represent to the ecosystems.
鱼类的鳃与周围的污染物直接接触,因此更容易受到微塑料(MPs)和重金属的影响。本研究旨在评估 MPs 和铜(Cu)在成年斑马鱼(Danio rerio)鳃中的长期暴露效应。为此,斑马鱼被暴露于 MPs(2mg/L)、Cu(Cu25,25μg/L)及其混合物(Cu25+MPs)中 30 天,然后评估鳃中的氧化应激、解毒、抗氧化、代谢和神经毒性酶/基因,以及 5-羟色胺能系统和细胞凋亡基因。在混合物组中,ROS 水平升高,而 CAT 和 GPx 活性受到抑制,表明斑马鱼鳃中发生了氧化应激。随后,LPO 水平增加,可能导致斑马鱼鳃中的氧化损伤。Cu25+MPs 组中的色氨酸羟化酶 1a(tph1a)和胱天蛋白酶 3(casp3)基因显著上调,分别表明 5-羟色胺合成和细胞凋亡途径的潜在失调。总的来说,本研究有助于提高对水生生物对 MPs 反应的认识,以及这些颗粒对生态系统可能产生的潜在生态风险。