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A role for sigma binding in the antipsychotic profile of BMY 14802?
D P Taylor1, M S Eison, S L Moon
1CNS Biology, Pharmaceutical Research Institute, Bristol-Myers Squibb Company, Wallingford, CT 06492-7660.
Abstract:
BMY 14802 was identified as a potential antipsychotic drug in traditional model systems, and this identification was confirmed in modern behavioral and electrophysiological systems. The drug appears to be atypical as an antipsychotic in its lack of activity in models predictive of the potential to produce extrapyramidal side effects and tardive dyskinesia. Indeed, this suggestion is corroborated by clinical findings to date. The atypical profile of BMY 14802 extends to its neurochemical actions and appears to find its basis in regionally selective, indirect modulation of the dopamine system. Furthermore, BMY 14802 exhibits interactions with sigma binding sites in vitro and in vivo, a notion supported by data from neurophysiological, behavioral, and biochemical investigations. BMY 14802 also appears to be neuroprotective in some model systems and may have utility in the treatment of stroke (Boissard et al. 1991). BMY 14802 appears to interact with 5-HT1A receptors, but this interaction does not seem to contribute significantly to the potential antipsychotic actions of the drug. Moreover, the formation of active metabolites of BMY 14802 does not appear to occur in animals or humans to an extent of physiological or behavioral relevance. If clinically efficacious, BMY 14802 may treat the symptoms of schizophrenia by a mechanism novel for antipsychotic drugs: regionally selective, indirect modulation of dopaminergic systems by specific interaction at sigma sites.
Insights
BMY 14802 shows potential as an atypical antipsychotic, with a novel mechanism involving dopamine system modulation and sigma site interaction. Clinical findings support its efficacy and lack of extrapyramidal side effects.
Area of Science:
- Neuroscience
- Pharmacology
- Psychiatry
Background:
- BMY 14802 identified as a potential antipsychotic in traditional and modern systems.
- Atypical antipsychotic profile suggested by lack of extrapyramidal side effects and tardive dyskinesia potential.
- Clinical findings corroborate the atypical profile of BMY 14802.
Purpose of the Study:
- To confirm BMY 14802 as an atypical antipsychotic.
- To investigate the neurochemical actions and mechanism of BMY 14802.
- To explore potential therapeutic applications, including neuroprotection and stroke treatment.
Main Methods:
- Behavioral and electrophysiological systems used for identification.
- In vitro and in vivo investigations of sigma binding site interactions.
- Neurophysiological, behavioral, and biochemical analyses to support findings.
Main Results:
- BMY 14802 demonstrates atypical antipsychotic properties, lacking activity in models predicting extrapyramidal side effects.
- The drug's mechanism involves regionally selective, indirect modulation of the dopamine system.
- Interactions with sigma binding sites and potential neuroprotective effects were observed.
Conclusions:
- BMY 14802 may treat schizophrenia symptoms via a novel mechanism: regionally selective dopaminergic modulation through sigma site interaction.
- The drug's atypical profile is supported by its neurochemical actions and lack of significant active metabolite formation.
- BMY 14802 shows promise as an antipsychotic with potential neuroprotective utility.