1989PubMedRequires access

The ratios of serotonin2 and dopamine2 affinities differentiate atypical and typical antipsychotic drugs.

Herbert Y. Meltzer, Shin Matsubara, J C Lee

Open publisher page 323 citations

Abstract

Atypical antipsychotic drugs such as clozapine, fluperlapine, and melperone produce weak catalepsy in rodents, and minimal extrapyramidal symptoms and serum prolactin elevations in humans, compared to typical antipsychotic drugs such as haloperidol. The biological basis for these differences has been attributed to relatively weak blockade at D2 dopamine (DA) receptors, various effects at D1 receptors, or potent serotonin2 (5-HT2) antagonism, although other possibilities exist. To clarify the relative importance of actions at D1, D2, and 5-HT2 receptors for identification of candidate typical and atypical drugs, we determined the negative log of the Ki (pKi) value of 21 typical and 17 atypical antipsychotic drugs for the striatal D1 and D2 and frontal cortex 5-HT2 receptors of rodent brain. Cluster analysis identified that the 5-HT2/D2 ratio was the most successful means of utilizing this data to classify typical and atypical antipsychotic drugs correctly. A 92 percent accuracy was achieved.

About this research paper

What this paper is about

Atypical antipsychotic drugs such as clozapine, fluperlapine, and melperone produce weak catalepsy in rodents, and minimal extrapyramidal symptoms and serum prolactin elevations in humans, compared to typical antipsychotic drugs such as haloperidol. The biological basis for these differences has been attributed to relatively weak blockade at D2 dopamine (DA) receptors, various effects at D1 receptors, or potent serotonin2 (5-HT2) antagonism, although other possibilities exist. To clarify the relative importance of actions at D1, D2, and 5-HT2 receptors for identification of candidate typical and atypical drugs, we determined the negative log of the Ki (pKi) value of 21 typical and 17 atypical antipsychotic drugs for the striatal D1 and D2 and frontal cortex 5-HT2 receptors of rodent brain. Cluster analysis identified that the 5-HT2/D2 ratio was the most successful means of utilizing this data to classify typical and atypical antipsychotic drugs correctly. A 92 percent accuracy was achieved.

Why it matters

OpenAlex reports 323 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Atypical antipsychotic drugs such as clozapine, fluperlapine, and melperone produce weak catalepsy in rodents, and minimal extrapyramidal symptoms and serum prolactin elevations in humans, compared to typical antipsychotic drugs such as haloperidol. The biological basis for these differences has been attributed to relatively weak blockade at D2 dopamine (DA) receptors, various effects at D1 receptors, or potent serotonin2 (5-HT2) antagonism, although other possibilities exist. To clarify the relative importance of actions at D1, D2, and 5-HT2 receptors for identification of candidate typical and atypical drugs, we determined the negative log of the Ki (pKi) value of 21 typical and 17 atypical antipsychotic drugs for the striatal D1 and D2 and frontal cortex 5-HT2 receptors of rodent brain. Cluster analysis identified that the 5-HT2/D2 ratio was the most successful means of utilizing this data to classify typical and atypical antipsychotic drugs correctly. A 92 percent accuracy was achieved.

Key concepts: Clozapine, Haloperidol, Antipsychotic, Dopamine receptor D2, Typical antipsychotic, Atypical antipsychotic, Catalepsy, Pharmacology

Related papers

Back to paper searchBrowse research topicsOriginal source
The ratios of serotonin2 and dopamine2 affinities differentiate atypical and typical antipsychotic drugs. — Research Paper | ScholarLens