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Iptakalim Preferentially Decreases Nicotine-induced Hyperlocomotion in Phencyclidine-sensitized Rats: A Potential Dual Action against Nicotine Addiction and Psychosis

N. Volf, G. Hu, Ming Li

Clinical Psychopharmacology and Neuroscience December 1, 2012 DOI: 10.9758/cpn.2012.10.3.168 via Semantic Scholar

Summary

AI-generated from the abstract

In a rat model of schizophrenia and nicotine addiction combined, a drug called iptakalim reduced nicotine-induced hyperactivity in a dose-dependent manner. The effect was strongest in rats that had been previously sensitized to both nicotine and the schizophrenia-like drug phencyclidine (PCP), and weaker in rats sensitized to either drug alone or to saline. This suggests iptakalim may be a promising treatment for nicotine abuse in people with schizophrenia.

Study at a glance

Characteristics Animal model Peer reviewed
Population Male Sprague-Dawley rats
Interventions Iptakalim Nicotine Phencyclidine
Dose 10-20 mg/kg
Duration 14 consecutive days
Keywords Medicine Psychology
Key finding Iptakalim (10-20 mg/kg) reduced nicotine-induced hyperlocomotion in rats, with a preferential effect in those sensitized to both nicotine and PCP.

Abstract

Objective Iptakalim is a putative ATP-sensitive potassium (KATP) channel opener. It is also a novel nicotinic acetylcholine receptor (nAChR) blocker and can antagonize nicotine-induced increase in dopamine release in the nucleus accumbens. Our recent work also shows that iptakalim exhibits a clozapine-like atypical antipsychotic profile, indicating that iptakalim may possess a dual action against nicotine addiction and schizophrenia. Methods The present study examined the potential therapeutic effects of iptakalim on nicotine use in schizophrenia. We created an animal model of comorbidity of nicotine addiction and schizophrenia by injecting male Sprague-Dawley rats with nicotine (0.40 mg/kg, subcutaneously[sc]) or saline, in combination with phencyclidine (PCP, 3.0 mg/kg, sc) or saline daily for 14 consecutive days. Results During the PCP/nicotine sensitization phase, PCP and nicotine independently increased motor activity over time. PCP also disrupted prepulse inhibition (PPI) of acoustic startle response. Acute nicotine treatment attenuated the PCP-induced hyperlocomotion and PCP-induced disruption of PPI, whereas repeated nicotine treatment potentiated these effects. Importantly, pretreatment with iptakalim (10-20 mg/kg, intraperitoneally) reduced nicotine-induced hyperlocomotion in a dose-dependent fashion. This reduction effect was highly selective: it was more effective in rats previously sensitized to the combination of PCP and nicotine, but less effective in rats sensitized to saline, nicotine alone or PCP alone. Conclusion To the extent that the combined nicotine and PCP sensitization mimics comorbid nicotine addiction in schizophrenia, the preferential inhibitory effect of iptakalim on nicotine-induced hyperlocomotion suggests that iptakalim may be a potential useful drug for the treatment nicotine abuse in schizophrenia.

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