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PMID: 2168841 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Suppression of epileptiform burst discharges in CA3 neurons of rat hippocampal slices by the organic calcium channel blocker, verapamil.

Experimental brain research ·Vol. 81 ·No. 2 ·1990-00-00 ·Pages 288-96

Aicardi G, Schwartzkroin PA

Abstract

We studied the effects of the organic calcium channel blocker, verapamil, on spontaneous and bicuculine-induced epileptiform burst discharges in CA3 pyramidal cells of hippocampal slices. A transient increase of burst discharge rate was observed in most cells within 30 min after the addition of verapamil (100 microM) to the perfusing medium. Prolonged verapamil perfusions gradually reduced the rate and duration of burst discharges, then abolished them in all tested slices (over periods of 50-150 min) without blocking synaptic transmission. Responses to intracellular injections of current pulses were also gradually affected by verapamil: Action potential amplitude was decreased, action potential duration increased, frequency adaptation increased, amplitude of the fast hyperpolarization following a single action potential decreased, and amplitude and duration of the slow afterhyperpolarization markedly reduced. The amplitude of calcium spikes elicited in slices perfused with tetrodotoxin-containing medium was not affected by verapamil, but the mean velocity of depolarization near the peak of the calcium spike was decreased. Membrane resting potential and input resistance were not affected by verapamil. These results confirm that verapamil is able to suppress epileptiform activity, but suggest that this effect is rather non-specific, due to inhibition of both postsynaptic sodium and calcium conductances.

MeSH Terms
Action Potentials/drug effects Animals Calcium Channels/drug effects,physiology Electric Stimulation Epilepsy/physiopathology Female Hippocampus/drug effects,physiology,physiopathology In Vitro Techniques Neurons/drug effects,physiology Pyramidal Tracts/drug effects,physiology,physiopathology Rats Rats, Inbred Strains Sodium Channels/drug effects,physiology Tetrodotoxin/pharmacology Verapamil/pharmacology
Chemicals
Calcium Channels Sodium Channels Tetrodotoxin Verapamil
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Aicardi G
Department of Neurological Surgery, University of Washington, Seattle 98195.
Schwartzkroin P A
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Article Info
Journal
Experimental brain research
Abbr.
Exp Brain Res
ISSN
0014-4819
Published
1990-00-00
Pages
288-96
Language
English
Region
Germany
NLM ID
0043312
Subset
IM
Grants
NINDS NIH HHS · NS 20482 · United States
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