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PMID: 9437007 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Sodium current in rat and cat thalamocortical neurons: role of a non-inactivating component in tonic and burst firing.

Parri HR, Crunelli V

Abstract

The properties of the Na+ current present in thalamocortical neurons of the dorsal lateral geniculate nucleus were investigated in dissociated neonate rat and cat neurons and in neurons from slices of neonate and adult rats using patch and sharp electrode recordings. The steady-state activation and inactivation of the transient Na+ current (INa) was well fitted with a Boltzmann curve (voltage of half-maximal activation and inactivation, V1/2, -29.84 mV and -70.04 mV, respectively). Steady-state activation and inactivation curves showed a small region of overlap, indicating the occurrence of a INa window current. INa decay could be fitted with a single exponential function, consistent with the presence of only one channel type. Voltage ramp and step protocols showed the presence of a noninactivating component of the Na+ current (INaP) that activated at potentials more negative (V1/2 = -56.93 mV) than those of INa. The maximal amplitude of INaP was approximately 2.5% of INa, thus significantly greater than the calculated contribution (0.2%) of the INa window component. Comparison of results from dissociated neurons and neurons in slices suggested a dendritic as well as a somatic localization of INaP. Inclusion of papain in the patch electrode removed the fast inactivation of INa and induced a current with voltage-dependence (V1/2 = -56.92) and activation parameters similar to those of INaP. Current-clamp recordings with sharp electrodes showed that INaP contributed to depolarizations evoked from potentials of approximately -60 mV and unexpectedly to the amplitude and latency of low-threshold Ca2+ potentials, suggesting that this noninactivating component of the Na+ channel population plays an important role in the integrative properties of thalamocortical neurons during both tonic and burst-firing patterns.

MeSH Terms
Action Potentials/drug effects,physiology Animals Animals, Newborn Cats Cerebral Cortex/cytology Geniculate Bodies/cytology Ion Channel Gating/drug effects,physiology Kinetics Male Microelectrodes Neurons/chemistry,drug effects,physiology Patch-Clamp Techniques Periodicity Rats Rats, Wistar Sodium/metabolism Sodium Channels/physiology Tetrodotoxin/pharmacology Thalamus/cytology Visual Pathways/cytology,physiology
Chemicals
Sodium Channels Tetrodotoxin Sodium
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Parri H R
Physiology Unit, School of Molecular and Medical Biosciences, University of Wales Cardiff, Cardiff CF1 3US, United Kingdom.
Crunelli V
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Article Info
Journal
The Journal of neuroscience : the official journal of the Society for Neuroscience
Abbr.
J Neurosci
ISSN
0270-6474
Published
1998-02-01
Pages
854-67
Language
English
Region
United States
NLM ID
8102140
PMCID
PMC6792749
Subset
IM
Grants
Wellcome Trust · United Kingdom
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