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Portela, S. M.

Publications and source records attributed to Portela, S. M..

2 recordsLinked to original sources

Evaluation of behavioral and neurochemical changes induced by carbofuran in zebrafish (Danio rerio)

Carbofuran (CF) is a carbamate class pesticide, widely used in agriculture for pest control in crops. On the other hand, CF is also detected as a contaminant in food and water sources. This pesticide has high toxicity in non-target organisms, and its presence in the environment poses a threat to the ecosystem. Research has revealed that this pesticide acts as an inhibitor of acetylcholinesterase (AChE), inducing an accumulation of acetylcholine in the brain. Consequently, this leads to the emergence of a cholinergic syndrome and various detrimental effects on human health. Nonetheless, our understanding of CF impact on the central nervous system remains elusive. Therefore, this study aimed to investigate the effects of CF on behavioral and neurochemical parameters in adult zebrafish. The animals were exposed for 96 hours to different concentrations of CF (5, 50, and 500 {micro}g/L) and subjected to behavioral assessments in the novel tank test (NTT) and social preference test (SPT). Subsequently, they were euthanized, and their brains were used to evaluate neurochemical markers associated with oxidative stress and AChE levels. In the NTT and SPT, CF did not alter the evaluated behavioral parameters. Furthermore, CF did not affect the levels of AChE, non-protein sulfhydryl groups, and thiobarbituric acid reactive species in the zebrafish brain. However, further research is needed regarding the environmental exposure of this compound to non-target organisms.

neuroscience↗

Exposure to epoxiconazole induces hyperlocomotion in adult zebrafish

Global agricultural production is sustained by an elevated use of pesticides. Their application in crops results in environmental contamination, which is demonstrated by widespread detections of these chemicals in aquatic ecosystems. This presence poses a risk to non-target organisms and ecological balance since the effects of potential exposure are misunderstood. Epoxiconazole (EPX) is a widely employed triazole fungicide, which has been frequently reported as a contaminant in superficial waters. However, the behavioral effects of EPX exposure in non-target organisms such as fish remain unexplored. We aimed to investigate the effects of EPX exposure on behavioral and biochemical outcomes, using zebrafish as a model organism. For this purpose, a static system was set with concentrations (24, 144, 240 g/L) based on the fungicide environmental detection. The novel tank test (NTT) was performed after 96 h of exposure. The social preference test (SPT) was executed after 120 h, as well as the biochemical assays. In the NTT, the animals increased distance traveled, crossings, entries in the top area, and mean speed, indicating hyperlocomotion. No significant effects were observed in the SPT and the biochemical analyses. We suggest that the increased locomotion is related to the stimulant properties of EPX. Our results contribute to an in-depth understanding of this fungicide effects in zebrafish, which is essential for environmental contamination monitoring and management.

neuroscience↗