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Becker, S. Z.

Publications and source records attributed to Becker, S. Z..

2 recordsLinked to original sources

Ketamine-induced NMDA receptor hypofunction alters social and locomotor behavior in adult zebrafish

BackgroundNMDA receptor antagonists, such as ketamine, are widely used to model schizophrenia-related phenotypes in preclinical studies. While zebrafish have emerged as a promising model organism for neuropsychiatric research, few studies have characterized their behavioral responses to repeated ketamine exposure. MethodsThree independent experiments were conducted to evaluate the acute, repeated and sustained behavioral effects of ketamine in adult zebrafish. In Experiment I, fish were exposed to 10, 20, or 40 mg/L ketamine once daily for five days, and submitted to the social preference (SPT) and open tank (OTT) tests on days 1 and 5, and re-exposed and re-tested on day 7 after a 48-hour washout. Experiments II and III assessed whether behavioral changes persisted following 5- or 14-day exposure protocols, with testing conducted 48 hours after the final treatment. ResultsKetamine induced robust, concentration-dependent alterations in Experiment I: it reduced social interaction and increased locomotor activity in the SPT on all experimental days, while increased rotational behavior in the OTT on days 1 and 5. These effects did not intensify over repeated exposure and were not sustained after a 48-hour washout in either protocol (Experiments II and III). ConclusionsThe results support the utility of zebrafish for modeling acute behavioral responses to NMDA receptor antagonism, capturing features of schizophrenia-like phenotypes. However, no evidence of behavioral sensitization or lasting disruption was observed, diverging from rodent studies. Future studies should incorporate antipsychotic validation, neurochemical analyses, and alternative exposure strategies to further develop zebrafish as a translational model for psychiatric research.

pharmacology and toxicology↗

Neurobehavioral effects of fungicides in zebrafish: a systematic review and meta-analysis

With the aim of yielding high productivity levels, pesticides are widely used in global agriculture. Among them, fungicides are compounds intended to inhibit fungal proliferation in crops and seeds. Their application often leads to environmental contamination, with these chemicals persistently being detected in surface waters. This presence may threaten non-target organisms that dwell in the affected ecosystems, including humans. In toxicologic research, the zebrafish (Danio rerio) is the most used fish species to assess the potential effects of fungicide exposure, generating numerous and sometimes conflicting findings. We conducted a systematic review and meta-analysis aiming to synthesize the neurobehavioral effects of fungicides in zebrafish. The search was performed in three databases (PubMed, Scopus, and Web of Science) and the screening was based on a two-stage process guided by pre-defined inclusion/exclusion criteria. Qualitative and quantitative data, as well as reporting quality, were extracted from the included studies (n = 60). Meta-analyses were performed for the outcomes of distance traveled in larvae and adults, and spontaneous movements in embryos. We found an overall significant effect of fungicide exposure on distance, which was lower in exposed versus control groups (SMD -0.44 [-0.74; -0.13], p = 0.0055). No effect was observed for spontaneous movements. The overall heterogeneity for distance and spontaneous movements was considered high (I2 = 80%) and moderate (I2 = 74%), respectively. This can be explained by substantial methodological variation between protocols, whereas a poor reporting practice hinders the proper critical evaluation of the findings. However, a sensitivity analysis did not indicate any study skewing the meta-analyses. This review demonstrates the need for better-designed and reported experiments in this field. Highlights- We systematically reviewed the behavioral effects of fungicides in zebrafish - Fungicides decrease the distance traveled - Fungicide exposure has no significant effects on spontaneous movements - Moderate to high levels of heterogeneity were found - The results showed a need for better-designed studies with clarity of report

pharmacology and toxicology↗