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PMID: 2454285 Published · ppublish English Journal Article

The sodium current underlying action potentials in guinea pig hippocampal CA1 neurons.

The Journal of general physiology ·Vol. 91 ·No. 3 ·1988-03-00 ·Pages 373-98

Sah P, Gibb AJ, Gage PW

Abstract

Neurons were acutely dissociated from the CA1 region of hippocampal slices from guinea pigs. Whole-cell recording techniques were used to record and control membrane potential. When the electrode contained KF, the average resting potential was about -40 mV and action potentials in cells at -80 mV (current-clamped) had an amplitude greater than 100 mV. Cells were voltage-clamped at 22-24 degrees C with electrodes containing CsF. Inward currents generated with depolarizing voltage pulses reversed close to the sodium equilibrium potential and could be completely blocked with tetrodotoxin (1 microM). The amplitude of these sodium currents was maximal at about -20 mV and the amplitude of the tail currents was linear with potential, which indicates that the channels were ohmic. The sodium conductance increased with depolarization in a range from -60 to 0 mV with an average half-maximum at about -40 mV. The decay of the currents was not exponential at potentials more positive than -20 mV. The time to peak and half-decay time of the currents varied with potential and temperature. Half of the channels were inactivated at a potential of -75 mV and inactivation was essentially complete at -40 to -30 mV. Recovery from inactivation was not exponential and the rate varied with potential. At lower temperatures, the amplitude of sodium currents decreased, their time course became longer, and half-maximal inactivation shifted to more negative potentials. In a small fraction of cells studied, sodium currents were much more rapid but the voltage dependence of activation and inactivation was very similar.

MeSH Terms
Action Potentials Animals Electric Conductivity Female Guinea Pigs Hippocampus/metabolism In Vitro Techniques Ion Channels/metabolism Kinetics Male Membrane Potentials Neurons/metabolism Sodium/metabolism Temperature
Chemicals
Ion Channels Sodium
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Sah P
Department of Physiology, John Curtin School of Medical Research, Australian National University, Canberra.
Gibb A J
Gage P W
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Article Info
Journal
The Journal of general physiology
Abbr.
J Gen Physiol
ISSN
0022-1295
Published
1988-03-00
Pages
373-98
Language
English
Region
United States
NLM ID
2985110R
PMCID
PMC2216136
Subset
IM
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