Ketamine modulates the exploratory dynamics and homebase-related behaviors of adult zebrafish.
Camilla W Pretzel, João V Borba, Cássio M Resmim, Murilo S De Abreu, Allan V Kalueff, Barbara D Fontana, Julia Canzian, Denis B Rosemberg
Pharmacology, biochemistry, and behavior December 1, 2024 DOI: 10.1016/j.pbb.2024.173892 via PubMed
Summary
AI-generated from the abstractAcute exposure to subanesthetic doses of ketamine (20 and 40 mg/L) increased total distance traveled in adult zebrafish, indicating hyperlocomotion. All tested concentrations (2, 20, and 40 mg/L) elicited circling behavior, a stereotyped-like response that diminished over time. Ketamine also reduced thigmotaxis and homebase activity while increasing the average length of trips, suggesting anxiolytic-like effects on spatio-temporal exploratory dynamics. These findings support ketamine's modulatory influence on behavior and highlight homebase-related measurements as useful for assessing behavioral changes in zebrafish models.
Study at a glance
| Characteristics | Experimental study Peer reviewed |
|---|---|
| Population | Adult zebrafish |
| Intervention | Ketamine |
| Dose | 0, 2, 20, and 40 mg/L |
| Duration | 20-minute exposure, 30-minute trial |
| Topics | Anxiety Ketamine |
| Keywords | Nmda receptor Open field test Spatio-temporal exploration Stereotyped behavior #anxiety-research anxiety |
| Citations | 5 |
| Key finding | Ketamine at 20 and 40 mg/L induced hyperlocomotion, reduced thigmotaxis and homebase activity, and increased average trip length, suggesting anxiolytic-like effects in zebrafish. |
Abstract
Anxiety can be a protective emotion when animals face aversive conditions, but is commonly associated with various neuropsychiatric disorders when pathologically exacerbated. Drug repurposing has emerged as a valuable strategy based on utilizing the existing pharmaceuticals for new therapeutic purposes. Ketamine, traditionally used as an anesthetic, acts as a non-competitive antagonist of the glutamate N-methyl-d-aspartate (NMDA) receptor, and shows potential anxiolytic and antidepressant effects at subanesthetic doses. However, the influence of ketamine on multiple behavioral domains in vertebrates is not completely understood. Here, we evaluated the potential modulatory effect of ketamine on the spatio-temporal exploratory dynamics and homebase-related behaviors in adult zebrafish using the open field test (OFT). Animals were exposed to subanesthetic concentrations of ketamine (0, 2, 20, and 40 mg/L) for 20 min and their locomotion-, exploration- and homebase-related behaviors were assessed in a single 30-min trial. Our data revealed that acute ketamine (20 and 40 mg/L) induced hyperlocomotion, as verified by the increased total distance traveled. All concentrations tested elicited circling behavior, a stereotyped-like response which gradually reduced across the periods of test. We also observed modulatory effects of ketamine on the spatio-temporal exploratory pattern, in which the reduced thigmotaxis and homebase activity, associated with the increased average length of trips, suggest anxiolytic-like effects. Collectively, our findings support the modulatory effects of ketamine on the spatio-temporal exploratory activity, and corroborate the utility of homebase-related measurements to evaluate the behavioral dynamics in zebrafish models.