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J M Kesslick

Publications and source records attributed to J M Kesslick.

4 recordsLinked to original sources

Pyrrole mannich bases as potential antipsychotic agents.

Recently, we reported on a series of arylpiperazines 4 which exhibit high affinity for the serotonin 5-HT-1A and 5-HT-1B binding sites. Although these compounds interact weakly with dopamine D-1 and D-2 receptors, they are reasonably potent in inhibiting conditioned avoidance responding (CAR) in the rat, an indication of potential antipsychotic activity. Conversion of these arylpiperazines to pyrrole Mannich bases has provided a series of compounds (10-44) which exhibit potent inhibition of CAR when given po and have strong affinity for both the D-2 and 5-HT-1A binding sites. Some of these agents also fail to produce catalepsy. The D-2 binding data and the block of CAR suggest that they are potential antipsychotic agents and the lack of cataleptogenic potential suggests some might possess less liability for producing extrapyramidal side effects and tardive dyskinesias in man.

Animals↗

Blockade of conditioned avoidance responding by trazodone, etoperidone, and MCPP.

Phenylpiperazines, such as meta-chlorophenylpiperazine (MCPP) a serotonin agonist, have recently been reported to block conditioned avoidance responding (CAR) in the rat, which is an indication of possible antipsychotic utility. Since MCPP is a major metabolite of both antidepressant drugs trazodone (TZ) and etoperidone (ET), both were examined for activity in blocking CAR in a single-trial lever press task in Fisher 344 rats. Both TZ and ET produced dose-related falls in CAR with ED50 values (95% confidence limits) of 13.3 (9.6, 18.5) and 10.4 (8.5, 13.2) mg/kg IP, respectively. In contrast, MCPP had an ED50 value of 2.5 (1.8, 3.6) mg/kg IP TZ, ET, and MCPP were also examined for the production of catalepsy and the blockade of amphetamine-induced stereotypy to determine whether each was acting to block CAR via a dopaminergic mechanism of action. None, however, was found highly active. On the other hand, the serotonin receptor blocker metergoline (1.0 mg/kg IP) significantly reduced the CAR block produced by each, suggesting a serotonergic mechanism of action. Since TZ and ET are both less potent than MCPP, the data also suggest TZ and ET may block CAR via formation of MCPP.

Animals↗

Activity of aromatic substituted phenylpiperazines lacking affinity for dopamine binding sites in a preclinical test of antipsychotic efficacy.

Generally, antipsychotic agents are dopamine receptor blocking agents that also block conditioned avoidance responding (CAR) in the rat. Recently, however, both (Q-methoxyphenyl)piperazine (OMPP, 1h) and (m-chlorophenyl)piperazine (MCPP, 1o) have been reported to block conditioned avoidance responding in the rat although neither has dopamine receptor blocking properties. The present paper examines the behavioral and biochemical profile of a number of additional substituted phenylpiperazines. None of the phenylpiperazines tested demonstrated high affinity for either dopamine D-1 or D-2 receptor sites, yet many were effective in blocking CAR. The results suggest that the phenylpiperazines may be effective antipsychotic agents without blocking dopamine receptors. Moreover, the active compounds did demonstrate activity in displacing ligand binding to serotonin receptors. Receptor binding profiles were determined for 5-HT-1A and 5-HT-1B binding sites as well as for 5-HT-2 sites. The data from this preclinical test suggest these phenylpiperazines might be effective antipsychotic agents acting via a nondopaminergic mechanism of action.

Animals↗

Block of conditioned avoidance responding in the rat by substituted phenylpiperazines.

Ortho-methoxyphenylpiperazine (OMPP) and meta-substituted chlorophenylpiperazine (MCPP) blocked conditioned avoidance responding (CAR) in the rat (ED50 values = 5.6 (4.6, 7.3) and 2.4 (1.9, 2.9) mg/kg i.p. (95% confidence limits), respectively) without markedly altering escape responding. Since this test predicts antipsychotic efficacy, the piperazines were examined in radioligand binding assays and found to have no affinity for dopamine (DA) binding sites, but were active at serotonin binding sites. OMPP displaced ligands for the 5-HT1A binding site with high affinity (Ki = 9.5 (5.4, 17.9) nM) but was inactive at 5-HT2 sites (Ki greater than 1000 nM). MCPP, on the other hand, displaced ligands for 5-HT1, 5-HT1A and 5-HT2 binding sites with similar potencies (Ki values = 25 (3, 67), 23 (14, 40) and 40 (33, 48) nM, respectively). Pretreatment with metergoline (1.0 mg/kg i.p. -30 min) reduced MCPP- but not OMPP-induced block of CAR. OMPP, on the other hand, acted as a DA receptor antagonist in vivo blocking amphetamine-induced stereotyped behavior, whereas MCPP did not. Neither produced catalepsy even given in doses 8-10 times those required to block CAR. Insofar as these compounds lack antidopaminergic activity in vivo, yet are active in a test (CAR) predictive of antipsychotic activity in which DA receptor antagonists are active, they may be novel antipsychotic agents, or, perhaps, false positives in the CAR paradigm.

Amphetamine↗