Abstract
Squid giant axons were internally perfused with tetrodotoxin and procaine, and excitability and electrical properties were studied by means of current-clamp and sucrose-gap voltage-clamp methods. Internally perfused tetrodotoxin was virtually without effect on the resting potential, the action potential, the early transient membrane ionic current, and the late steady-state membrane ionic current even at very high concentrations (1,000-10,000 nM) for a long period of time (up to 36 min). Externally applied tetrodotoxin at a concentration of 100 nM blocked the action potential and the early transient current in 2-3 min. Internally perfused procaine at concentrations of 1-10 mM reversibly depressed or blocked the action potential with an accompanying hyperpolarization of 2-4 mv, and inhibited both the early transient and late steady-state currents to the same extent. The time to peak early transient current was increased. The present results and the insolubility of tetrodotoxin in lipids have led to the conclusion that the gate controlling the flow of sodium ions through channels is located on the outer surface of the nerve membrane.
MeSH Terms
Action Potentials/drug effects
Animals
Axons/drug effects
Cell Membrane Permeability
Electrophysiology
Membrane Potentials/drug effects
Mollusca
Neural Conduction/drug effects
Potassium/metabolism
Procaine/pharmacology
Sodium/metabolism
Tetrodotoxin/pharmacology
Toxins, Biological/pharmacology
Chemicals
Toxins, Biological
Tetrodotoxin
Procaine
Sodium
Potassium
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Narahashi T
Anderson N C
Moore J W
References (27)
27 references, click to expand
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