Ketamine impairs the performance of male mice in novel recognition object test and reduces the immunoreactivity of GAD67 in the hippocampus: Role of pioglitazone.
Talita Rodrigues, Getulio Nicola Bressan, Patrícia Zorzi Juliani, Maria Eduarda Brandli da Silva, Roselei Fachinetto
Pharmacology, biochemistry, and behavior February 1, 2025 DOI: 10.1016/j.pbb.2024.173950 via PubMed
Summary
AI-generated from the abstractIn a mouse model of schizophrenia-like symptoms induced by ketamine, the drug pioglitazone (an activator of PPAR-γ receptors) reversed some of the cognitive and behavioral changes. Ketamine reduced exploration in a novel object recognition test and decreased GAD67 immunoreactivity in the hippocampus. Pioglitazone, given for the last 7 days of a 14-day ketamine regimen, restored performance on the recognition test and normalized hippocampal GAD67 levels. The results suggest that pioglitazone may improve cognitive symptoms associated with schizophrenia, possibly through modulation of GABA-related signaling in the hippocampus.
Study at a glance
| Characteristics | Animal experiment Peer reviewed |
|---|---|
| Population | Male mice |
| Interventions | ketamine pioglitazone |
| Dose | 30 mg/kg ketamine, 3 or 9 mg/kg pioglitazone |
| Duration | 14 consecutive days of ketamine administration; pioglitazone from day 8 to day 14 |
| Keywords | Animal behavior Monoamine oxidase Open field Social interaction Stereotypy |
| Key finding | Pioglitazone reversed ketamine-induced deficits in novel object recognition and restored hippocampal GAD67 immunoreactivity, indicating a potential role in treating cognitive symptoms of schizophrenia. |
Abstract
Schizophrenia is a mental disorder characterized by positive, negative, and cognitive symptoms which is treated with antipsychotics. However, these drugs present several side effects and, some schizophrenia symptoms, like cognitive, are difficult to treat. The peroxisome proliferator-activated receptors-gamma (PPAR-γ) are expressed in dopaminergic neurons of the midbrain participating in the modulation of dopamine-mediated behavior . We investigated the effects of pioglitazone, an agonist of PPAR-γ, on the behavioral alterations induced by ketamine and, whether alterations in monoamine oxidase (MAO) activity, glutamic acid decarboxylase (GAD67), PPAR-γ or tyrosine hydroxylase (TH) immunoreactivity in brain tissues are involved in these effects. Male mice received ketamine (30 mg/kg), intraperitoneally, for 14 consecutive days, and pioglitazone (3 or 9 mg/kg), by gavage (day 8 up to day 14). Ketamine decreased nail-biting increasing the time exploring the center of the open field on day 8 and the number of rearing evaluated 30 min after its administration on day 14. Furthermore, ketamine decreased the percentage of investigation in the NOR test and the immunoreactivity of GAD67 in the hippocampus. No significant changes were found in other behavioral and biochemical tests. Pioglitazone attenuated the effects of ketamine on rearing and GAD67 immunoreactivity in the hippocampus, recovering the ketamine effects on NOR test. At a dose of 9 mg/kg, pioglitazone alone reduced the immunoreactivity of GAD67 in the hippocampus. Pioglitazone at both doses recovered the cognitive symptoms induced by ketamine an effect that seems to involve the modulation of GAD67 immunoreactivity in the hippocampus. In conclusion, pioglitazone improved the effects of ketamine on the NOR test which was, at least in part, associated with the modulation of GAD67 immunoreactivity in the hippocampus suggesting its beneficial role in cognitive symptoms.