Submaximal sodium-lack contractures in rapidly perfused frog ventricular strips
- 1 January 1986
- journal article
- research article
- Published by American Physiological Society in American Journal of Physiology-Cell Physiology
- Vol. 250 (1) , C155-C164
- https://doi.org/10.1152/ajpcell.1986.250.1.c155
Abstract
Rapid perfusion of strips of frog ventricular muscle (width less than or equal to 8 mm) by sodium-free Ringer yielded contractures with very fast rates of rise (half time approximately equal to 2 s) and flat plateaus. Tension in lithium Ringer was 0.64 (0.38-0.77) of the maximal tension the muscle could produce [i.e., for an extracellular potassium concentration ([K]o) of 160 mM, and an [Na]o of 0 mM at less than 15 degrees C], showing that intracellular calcium concentration ([Ca]i) in zero [Na]o and normal [K]o was insufficient to saturate the myofilaments. Tension was related to [Ca]o in an S-shaped manner (apparent Km = 1.3 microM), was rapidly increased by electrical depolarization, high potassium, or low temperature, but was unaffected by up to 10(-5) M dihydroouabain. From these data was derived the working hypothesis that the value of [Ca]i during the contracture plateau is a steady-state value due to influx through a sodium-dependent mechanism and calcium uptake or efflux via a sodium-independent mechanism. Also, 1 microM dihydroouabain increased peak twitch tension by 60% but did not potentiate tension during the plateaus of contractures obtained by partial replacement of Nao. This result supports the working hypothesis and suggests that the potentiating effect of raising Nai may depend on the membrane potential (D. A. Eisner, W. J. Ledener, and R. D. Vaughan-Jones. J. Physiol. Lond. 335: 723-743, 1983).This publication has 24 references indexed in Scilit:
- Sodium/calcium exchange in mammalian ventricular muscle: a study with sodium‐sensitive micro‐electrodes.The Journal of Physiology, 1983
- The control of tonic tension by membrane potential and intracellular sodium activity in the sheep cardiac Purkinje fibre.The Journal of Physiology, 1983
- Charge movements during the Na+-Ca2+ exchange in heart sarcolemmal vesicles.Proceedings of the National Academy of Sciences, 1980
- The interaction of sodium and calcium ions at the cell membrane and the control of contractile strength in frog atrial muscle.The Journal of Physiology, 1980
- Relation between intracellular Na ion activity and tension of sheep cardiac Purkinje fibers exposed to dihydro-ouabainBiophysical Journal, 1980
- Sodium-calcium ion exchange in cardiac membrane vesicles.Proceedings of the National Academy of Sciences, 1979
- Myofilament-generated tension oscillations during partial calcium activation and activation dependence of the sarcomere length-tension relation of skinned cardiac cells.The Journal of general physiology, 1978
- A mechanism for Na/Ca transport.The Journal of general physiology, 1977
- Effect of changing the composition of the bathing solution upon the isometric tension—pCa relationship in bundles of crustacean myofibrilsThe Journal of Physiology, 1977
- Positive and Negative Inotropic Effects of Elevated Extracellular Potassium Level on Mammalian Ventricular MuscleThe Journal of general physiology, 1972