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Published on: February 20, 2019
Effects of TRK-820, a selective kappa opioid receptor agonist, on rat schizophrenia models
Satoru Yoshikawa1, Nana Hareyama, Ken Ikeda
1Pharmaceutical Research Laboratories, Toray Industries, Inc, Kamakura, Japan. Satoru_Yoshikawa@nts.toray.co.jp
Abstract:
Abnormalities in dopaminergic and serotonergic neurotransmission in the forebrain are believed to be involved in the underlying mechanism of schizophrenia; therefore, the direct blockade of the receptors associated with these systems is a central strategy for schizophrenia treatment, even though this strategy concurrently produces adverse effects like extrapyramidal effects. Kappa opioid receptors exist extensively in the brain and recent reports have suggested that these receptors are involved in modulating the release of several neurotransmitters including dopamine and serotonin. In the present study, we investigated the effect of TRK-820, (E)-N-[17-(cyclopropylmethyl)-4,5alpha-epoxy-3,14-dihydroxymorphinan-6beta-yl]-3-(furan-3-yl)-N-methylprop-2-enamide monohydrochloride, a selective kappa opioid receptor agonist, on phencyclidine-induced rat behavioral changes and on biochemical changes in the prefrontal cortex. First, TRK-820 dose-dependently inhibited phencyclidine-induced rat hyperlocomotion, which is one of the abnormal behaviors recognized as a rodent schizophrenia model. The inhibitory effect was completely antagonized with nor-BNI (nor-binaltorphimine hydrochloride), a selective kappa opioid receptor antagonist. Second, TRK-820 dose-dependently inhibited phencyclidine-induced stereotyped behaviors including head-weaving, which is considered a behavioral syndrome based on the impairment of the serotonergic system. Third, in an in vivo microdialysis study, TRK-820 dose-dependently attenuated the biochemical changes of both dopamine and serotonin in the prefrontal cortex of rats treated with phencyclidine without affecting their basal levels in normal rats. The initial findings that TRK-820 potentially modulates such monoamine changes and ameliorates abnormal behaviors related to their changes may suggest its therapeutic potential against the symptoms of schizophrenia.
Insights
TRK-820, a kappa opioid receptor agonist, effectively reduced schizophrenia-like behaviors in rats by modulating dopamine and serotonin levels in the prefrontal cortex, suggesting therapeutic potential.
Area of Science:
- Neuroscience
- Pharmacology
- Psychiatry
Background:
- Schizophrenia is linked to forebrain dopaminergic and serotonergic system abnormalities.
- Current treatments targeting these systems cause adverse effects like extrapyramidal symptoms.
- Kappa opioid receptors may modulate dopamine and serotonin release.
Purpose of the Study:
- To investigate the effects of TRK-820, a selective kappa opioid receptor agonist, on phencyclidine-induced behavioral and biochemical changes in rats.
- To assess TRK-820's potential therapeutic role in schizophrenia.
Main Methods:
- Administered TRK-820 to rats exhibiting phencyclidine-induced hyperlocomotion and stereotyped behaviors.
- Utilized nor-binaltorphimine hydrochloride (nor-BNI), a kappa opioid receptor antagonist, to antagonize TRK-820's effects.
- Conducted in vivo microdialysis to measure dopamine and serotonin levels in the prefrontal cortex.
Main Results:
- TRK-820 dose-dependently inhibited phencyclidine-induced hyperlocomotion and stereotyped behaviors.
- The inhibitory effects of TRK-820 were fully reversed by nor-BNI.
- TRK-820 attenuated phencyclidine-induced dopamine and serotonin changes in the prefrontal cortex without altering basal levels.
Conclusions:
- TRK-820 demonstrates efficacy in ameliorating schizophrenia-related behaviors in a rodent model.
- TRK-820 modulates dopaminergic and serotonergic neurotransmission in the prefrontal cortex.
- These findings suggest TRK-820 holds therapeutic potential for schizophrenia symptoms.

