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Mode of action of antipsychotic drugs: lessons from simpler models.

Baker MwDepartment of Physiology and Biophysics, Dalhousie University, Halifax, CanadaRoger P. CrollVarvara DyakonovaMarina Yu. KhabarovaSakharov DaElena E. Voronezhskaya
1995en
ABI

Annotatsiya

The monoaminergic system of the pond snail Lymnaea stagnalis changed markedly following prolonged exposure to chlorpromazine (CPZ). HPLC-ED indicated that levels of serotonin (5-HT), but not those of dopamine, were significantly decreased (e.g., to less than 40% after 30 days of treatment with 1 microM CPZ). Glyoxylate-induced fluorescence was depressed to undetectable levels in selected subpopulations of 5-HT neurons. Performance of 5-HT-dependent motor behaviors was impaired, and a considerably decreased firing activity was observed in affected 5-HT neurons. The present results, in accord with past ones with haloperidol, suggest that a previously overlooked mechanism of monoamine down-regulation may contribute to affects of antipsychotic drugs.

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