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Anticonvulsant profile of flunarizine and relation to Na(+) channel blocking effects
Wolfgang Fischer1, Holger Kittner, Ralf Regenthal
1Rudolf-Boehm-Institute of Pharmacology and Toxicology, University of Leipzig, Leipzig, Germany. fsw@medizin.uni-leipzig.de
Abstract:
The present study will summarize our findings concerning the anticonvulsant properties of the Ca2+ channel blocker flunarizine in a variety of experimental models of epilepsy. Flunarizine exhibits anticonvulsant effects against tonic seizures induced by electroshock or various chemoconvulsants in mice, however, did not protect against pentylenetetrazol-induced clonic seizures. In the MES test, the efficacy of clinically established antiepileptics was increased by co-medication. In the rotarod test, a minimal "neurotoxic" dose (TD50) of 18.0 mg/kg intraperitoneally was determined. In models of complex partial seizures like the hippocampal stimulation and the amygdala kindling in rats, flunarizine showed only a moderate activity. Thus, it can be suggested that the anticonvulsant potency of flunarizine in various screening tests is lower than that of standard antiepileptics such as carbamazepine and phenytoin. Concerning the possible mode of action, whole-cell patch-clamp experiments with cultured neonatal rat cardiomyocytes showed that flunarizine depressed the fast inward Na+ current in a concentration- and frequency-dependent manner well comparable with the action of phenytoin. It is concluded that the use-dependent inhibition of voltage-dependent Na+ channels may essentially contribute to the anticonvulsant activity of flunarizine in models for generalized tonic-clonic seizures. The clinical efficacy as add-on therapy is critically discussed in view of the present data.
Insights
Flunarizine, a calcium channel blocker, shows anticonvulsant effects against some seizures but is less potent than standard antiepileptics. Its action on sodium channels may contribute to its efficacy in generalized tonic-clonic seizures.
Area of Science:
- Neuroscience
- Pharmacology
Background:
- Epilepsy is a neurological disorder characterized by recurrent seizures.
- Calcium channel blockers are investigated for their potential anticonvulsant properties.
Purpose of the Study:
- To evaluate the anticonvulsant properties of flunarizine in various experimental epilepsy models.
- To investigate the mechanism of action of flunarizine.
Main Methods:
- Flunarizine was tested in mouse models for tonic seizures (electroshock, chemoconvulsants) and clonic seizures (pentylenetetrazol).
- Complex partial seizure models (hippocampal stimulation, amygdala kindling) in rats were used.
- Whole-cell patch-clamp experiments assessed effects on cardiomyocyte sodium currents.
Main Results:
- Flunarizine demonstrated anticonvulsant effects against tonic seizures but not clonic seizures.
- Its efficacy was lower than carbamazepine and phenytoin in screening tests.
- Flunarizine inhibited fast inward sodium currents in a manner similar to phenytoin.
Conclusions:
- Flunarizine's anticonvulsant activity may stem from use-dependent inhibition of voltage-dependent sodium channels.
- Its potency is lower than established antiepileptics, suggesting limited efficacy as a primary treatment.
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