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Ketamine and olanzapine alter behaviour and prefrontal-cortex BDNF differentially in male and female rats

Kalin Manooki, Mahdieh Gholami, Maryam Eslami, Salar Vaseghi, Batool Ghorbani Yekta

Scientific Reports August 23, 2025 DOI: 10.1038/s41598-025-15499-3 via OpenAlex

Summary

AI-generated from the abstract

In rats, five days of ketamine injections induced schizophrenia-like behaviors—increased activity and climbing, reduced exploration, impaired object-recognition memory, and lowered BDNF in the prefrontal cortex. Females showed additional effects: lower pain threshold (hyperalgesia) and less immobility in the forced swim test (an antidepressant-like effect). A single dose of olanzapine after the last ketamine injection reversed most behavioral deficits in both sexes, including memory impairment, and normalized pain threshold and immobility in females. Olanzapine did not affect BDNF levels, suggesting its therapeutic actions in this model do not rely on BDNF upregulation in the prefrontal cortex.

Study at a glance

Characteristics Controlled experiment Peer reviewed
Population Male and female rats
Interventions Ketamine hydrochloride Olanzapine
Dose 30 mg/kg ketamine, 6 mg/kg olanzapine
Duration 5 consecutive days of ketamine administration, with olanzapine given immediately after the final ketamine dose
Topics Ketamine
Keywords Olanzapine Prefrontal cortex Neuroscience Psychology
Citations 3
Key finding Ketamine induced a schizophrenia-like phenotype with more pronounced effects in female rats, and olanzapine reversed many of the behavioral deficits without affecting BDNF levels in the prefrontal cortex.

Abstract

Schizophrenia is a severe chronic neuropsychiatric disorder with a wide-range of cognitive and mental deficits and different categories of symptoms including positive, negative, and cognitive symptoms. In rodents, sub-chronic ketamine administration is a common method to induce a schizophrenia-like state. Olanzapine, an atypical antipsychotic medication, is used for the treatment and management of schizophrenia symptoms. Here, we aimed to assess the effects of ketamine, olanzapine, and their combination on cognitive and behavioral functions, as well as on brain-derived neurotrophic factor (BDNF) expression in the prefrontal cortex of male and female rats. Ketamine hydrochloride (30 mg/kg, i.p.) was administered for 5 consecutive days to induce schizophrenia-like alterations, and olanzapine (6 mg/kg, i.p.) was administered immediately after the final ketamine dose. Behavioral tests for locomotion, anxiety-like behavior, nociception, compulsive-like behavior, depression-like behavior, and memory were conducted, and BDNF mRNA levels in the prefrontal cortex were measured by quantitative real-time PCR. The results showed that ketamine increased locomotor activity and climbing behavior, decreased rearing (exploration), impaired novel object recognition memory, and lowered BDNF levels in the prefrontal cortex in both sexes. Certain effects of ketamine were sex-specific: ketamine reduced pain threshold (indicating hyperalgesia) and decreased immobility in the forced swim test (suggesting an anti-depressant-like effect) only in females. Olanzapine co-treatment restored locomotor activity and climbing and attenuated memory impairment in both sexes. Olanzapine also increased rearing and normalized pain threshold and immobility in females, indicating a mitigation of ketamine's female-specific effects. Olanzapine had no significant effect on BDNF levels. In conclusion, ketamine induced a schizophrenia-like phenotype with more pronounced effects in female rats, and olanzapine treatment reversed many of the ketamine-induced behavioral deficits in both sexes. Notably, the therapeutic actions of olanzapine in this model appear to be independent of BDNF upregulation in the prefrontal cortex.

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