Nonelectrolyte Penetration and Sodium Fluxes through the Axolemma of Resting and Stimulated Medium Sized Axons of the Squid Doryteuthis plei
Open Access
- 31 August 1966
- journal article
- research article
- Published by Rockefeller University Press in The Journal of general physiology
- Vol. 50 (1) , 43-59
- https://doi.org/10.1085/jgp.50.1.43
Abstract
The penetration of 14C-labeled erythritol, mannitol, and sucrose through the axolemma was determined in medium sized paired axons, one at rest and the other stimulated 25 times per sec. The resting permeabilities, in 10-7 cm/sec, are erythritol, 2.9 ± 0.3 (mean ± SEM); mannitol, 2.3 ± 0.4; and sucrose 0.9 ± 0.1. In the stimulated axons they are: erythritol, 5.2 ± 0.3; mannitol, 4.0 ± 0.5; and sucrose, 1.8 ± 0.3. Thus, the calculated permeabilities during activity (1 msec per impulse), in the same units, are: 100, 75, and 38, respectively. These changes in permeability are reversible. The effects of external potassium and sodium concentrations on erythritol penetration were also studied. At rest, erythritol penetration is independent of potassium and sodium concentrations. In the stimulated axons, erythritol penetration decreases when the extracellular sodium is diminished. Sodium influx (not the efflux) decreases during rest and activity when the extracellular sodium is diminished. The diminution during activity of erythritol and sodium entries in low sodium solutions may be related to a decrease of a drag effect of sodium ions on the nonelectrolyte molecules or to independent effects of the sodium concentration on sodium influx and the nonelectrolyte pathways. The axolemma discriminates among erythritol, mannitol, sucrose, and the different ionic species during rest and activity.This publication has 14 references indexed in Scilit:
- ION FLUXES AND TRANSFERENCE NUMBER IN SQUID AXONSJournal of Neurophysiology, 1965
- Schwann Cell and Axon Electrical Potential DifferencesThe Journal of general physiology, 1963
- Characterization of the Resting Axolemma in the Giant Axon of the SquidThe Journal of general physiology, 1961
- Equivalent Pore Radius in the Axolemma of the Giant Axon of the SquidNature, 1960
- KINETICS OF ION MOVEMENT IN THE SQUID GIANT AXONThe Journal of general physiology, 1955
- The potassium permeability of a giant nerve fibreThe Journal of Physiology, 1955
- Currents carried by sodium and potassium ions through the membrane of the giant axon of LoligoThe Journal of Physiology, 1952
- Measurement of current‐voltage relations in the membrane of the giant axon of LoligoThe Journal of Physiology, 1952
- The sodium and potassium content of cephalopod nerve fibresThe Journal of Physiology, 1951
- The ionic movements during nervous activityThe Journal of Physiology, 1951