Potassium and sodium shifts during in vitro isometric muscle contraction, and the time course of the ion-gradient recovery
- 1 May 1986
- journal article
- research article
- Published by Springer Nature in Pflügers Archiv - European Journal of Physiology
- Vol. 406 (5) , 458-463
- https://doi.org/10.1007/bf00583367
Abstract
Intracellular potassium ([K+]i), interstitial potassium ([K+]inter), intracellular sodium ([Na+]i), and resting membrane potential (RMP) were measured before and after repetitive stimulation of mouse soleus and EDL (extensor digitorum longus) muscles. At rest, RMP was −69.8 mV for soleus and −74.9 mV for EDL (37°C). [K+]i was 168 mM and 182 mM, respectively. In soleus, free [Na+]i was 12.7 mM. After repetitive stimulation (960 stimuli) RMP had decreased by 11.9 mV for soleus and by 18.2 mV for EDL. [K+]i was reduced by 32 mM and 48 mM, respectively, whereas [K+]inter was doubled. In soleus [Na+]i had increased by 10.6 mM, demonstrating that the [K+]i-decrease is three times higher than the [Na+]i-increase. It is concluded that this difference reflects different activity induced movements of Na and K, and that the difference is not due to the Na/K pumping ratio. The possible involvement of the potassium loss in muscle fatigue is discussed. After stimulation RMP recovered with a time constant of 0.9 min for soleus and 1.5 min for EDL. Within the first minutes after stimulation the intracellular potassium concentration increased by 20.4 mM/min for soleus and 21.7 mM/min for EDL. Free [Na+]i decreased with less than 10 mM/min. The mechanisms underlying the different rate of changes are discussed.This publication has 29 references indexed in Scilit:
- The coexistence in rat muscle cells of two distinct classes of Ca2+-dependent K+ channels with different pharmacological properties and different physiological functionsBiochemical and Biophysical Research Communications, 1984
- Chloride activity and its control in skeletal and cardiac musclePhilosophical Transactions of the Royal Society of London. B, Biological Sciences, 1982
- Reconstitution in planar lipid bilayers of a Ca2+-dependent K+ channel from transverse tubule membranes isolated from rabbit skeletal muscle.Proceedings of the National Academy of Sciences, 1982
- Single channel recordings of Ca2+-activated K+ currents in rat muscle cell cultureNature, 1981
- On the Possible Role of Potassium Ions in the Action of Terbutaline on Skeletal Muscle ContractionsActa Pharmacologica et Toxicologica, 1980
- Neutral carrier sodium ion-selective microelectrode for intracellular studiesAnalytical Chemistry, 1979
- State and distribution of potassium and sodium ions in frog skeletal muscleThe Journal of Membrane Biology, 1974
- Resting Membrane Potential and Ionic Distribution in Fast- and Slow-Twitch Mammalian MuscleJournal of Clinical Investigation, 1974
- The Effects of Repetitive Stimulation on the Action Potential and the Twitch of Rat MuscleActa Physiologica Scandinavica, 1974
- Relation of resting potential of rat gastrocnemius and soleus muscles to innervation, activity, and the Na‐K pumpJournal of Experimental Zoology, 1967