Long-term treatment with haloperidol affects neuropeptide S and NPSR mRNA levels in the rat brain

Author:

Palasz Artur,Rojczyk Ewa,Golyszny Milosz,Filipczyk Lukasz,Worthington John J.,Wiaderkiewicz Ryszard

Abstract

ObjectiveThe brainstem-derived neuropeptide S (NPS) has a multidirectional regulatory activity, especially as a potent anxiolytic factor. Accumulating data suggests that neuroleptics affect peptidergic signalling in various brain structures. However, there is no information regarding the influence of haloperidol on NPS and NPS receptor (NPSR) expression.MethodsWe assessed NPS and NPSR mRNA levels in brains of rats treated with haloperidol using quantitative real-time polymerase chain reaction.ResultsChronic haloperidol treatment (4 weeks) led to a striking upregulation of NPS and NPSR expression in the rat brainstem. Conversely, the NPSR mRNA expression was decreased in the hippocampus and striatum.ConclusionsThis stark increase of NPS in response to haloperidol treatment supports the hypothesis that this neuropeptide is involved in the dopamine-dependent anxiolytic actions of neuroleptics and possibly also in the pathophysiology of mental disorders. Furthermore, our findings underline the complex nature of potential interactions between dopamine receptors and brain peptidergic pathways, which has potential clinical applications.

Publisher

Cambridge University Press (CUP)

Subject

Biological Psychiatry,Psychiatry and Mental health

Reference50 articles.

1. Antipsychotic Drugs Inhibit the Human Corticotropin-Releasing-Hormone Gene Promoter Activity in Neuro-2A Cells—an Involvement of Protein Kinases

2. Clozapine, but not Haloperidol, Increases Brain Concentrations of Neuroactive Steroids in the Rat

3. Differential Effects of Classical and Atypical Antipsychotic Drugs on A9 and A10 Dopamine Neurons

4. Neuropeptide Y mRNA expression levels following chronic olanzapine, clozapine and haloperidol administration in rats

5. S-16924 [(R)-2-[1-[2-(2,3-dihydro-benzo[1,4]dioxin-5-yloxy)-ethyl]- pyrrolidin-3yl]-1-(4-fluorophenyl)-ethanone], a novel, potential antipsychotic with marked serotonin1A agonist properties: III. Anxiolytic actions in comparison with clozapine and haloperidol;Millan;J Pharmacol Exp Ther,1999

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