1. Antimanic-like effect of dipyridamole in the methylphenidate-induced hyperlocomotion.
- Author
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Santos AG, Kühl CE, Higashijima AN, Kanazawa LKS, de Souza STF, and Andreatini R
- Subjects
- Animals, Mice, Male, Female, Central Nervous System Stimulants pharmacology, Allopurinol pharmacology, Inosine pharmacology, Locomotion drug effects, Motor Activity drug effects, Hyperkinesis chemically induced, Hyperkinesis drug therapy, Dose-Response Relationship, Drug, Dipyridamole pharmacology, Methylphenidate pharmacology
- Abstract
Background: Adenosinergic system has been implicated in the pathophysiology of bipolar disorder and drugs that affect adenosine neurotransmission have shown some efficacy as add-on therapy in manic patients., Objective: Thus, the aim of the present study was to screen adenosinergic drugs for antimanic-like effect in methylphenidate (MPH)-induced hyperlocomotion in mice., Methods: Male and female Swiss mice received a single allopurinol (50 and 200 mg/kg, ip), dipyridamole (20 mg/kg, ip), or inosine (50 mg/kg, ip) administration before an acute MPH challenge (5 mg/kg, sc). In experiments with repeated treatment, male mice received a daily administration of allopurinol (25 and 50 mg/kg, ip), dipyridamole (20 mg/kg, ip), or inosine (50 mg/kg, ip) for 14 days. Finally, pretreatment with aminophylline (2 mg/kg, sc), an unspecific adenosine receptor antagonist, was used to evaluate a putative adenosinergic mediation. Locomotor activity was measured in the automated activity chamber for 20 min., Results: Acute and repeated dipyridamole reduced the increase in locomotor activity induced by MPH, while allopurinol and inosine had no effect. Aminophylline blocked the effect of dipyridamole in MPH-induced hyperlocomotion., Conclusion: The present results suggest that dipyridamole may have an antimanic-like effect through adenosine receptors and reinforce the proposal that the adenosine system may be an interesting target for new antimanic drugs., (© 2024 Société Française de Pharmacologie et de Thérapeutique. Published by John Wiley & Sons Ltd.)
- Published
- 2024
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