4.4 Article

Voltage-gated Na+ channel II immunoreactivity is selectively up-regulated in hippocampal interneurons of seizure sensitive gerbils

Journal

NEUROSCIENCE LETTERS
Volume 438, Issue 3, Pages 295-299

Publisher

ELSEVIER IRELAND LTD
DOI: 10.1016/j.neulet.2008.04.079

Keywords

voltage-dependent Na+ channel; epilepsy; seizure; Mongolian gerbil; interneuron

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In the present study, we investigated the distribution of voltage-gated Na+ channels (VGSCs) in the normal and epileptic hippocampus of gerbils (a genetic epilepsy model) in order to confirm the relationship between VGSC and seizure activity in these animals. There was no difference of VGSC I immuno reactivity in the hippocampus between seizure-resistant (SR) and seizure sensitive (SS) gerbils. VGSC II immunoreactivity was rarely detected in the perikarya of principal neurons and interneurons in the SIR gerbil hippocampus. However, in the SS gerbil hippocampus, VGSC II immunoreactivity was densely observed in the somata of interneurons located in the stratum radiatum and stratum lacunosum-moleculare. Double immunofluorescent study showed immunoreactivity for-calretinin (similar to 80% in VGSC II-positive neurons) or calbindin D-28k (similar to 20% in VGSC II-positive neurons) in VGSC II-immunoreactive neurons. VGSC II-immunoreactive neurons did not show parvalbumin immunoreactivity. These findings suggest that seizure activity in SS gerbils may be related to the selective hyperactivation of interneurons in stratum lacunosum-moleculare via the up-regulation of VGSC II expression, which leads to the disinhibition of CA1 pyramidal cells. (c) 2008 Elsevier Ireland Ltd. All rights reserved.

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