Ionic currents in the uterine smooth muscle.
- 1 March 1975
- journal article
- Published by Wiley in The Journal of Physiology
- Vol. 246 (1) , 1-36
- https://doi.org/10.1113/jphysiol.1975.sp010878
Abstract
1. Short segments of isolated longitudinal myometrium from the pregnant rate uterus have been studied in a double sucrose-gap voltage-clamp arrangement. The clamped segment averaged 65 mum times 240 mum times 100 mum, has an average total capacitance of 0-14 muF, and may contain 50-200 individual myometrial cells. 2. A significant resistance exists in series with the membrane, and limits theprecision of the quantitative information. However, it is argued that some qualitative and some comparative information is useful. 3. In Krebs-bicarbonate solution, depolarizing steps produced initial transient inward currents followed by delayed outward currents. 4. When [Na+]o was reduced by 50%, the equilibrium potential Ea shifted by an average of -17-6 mV, the maximum inward current was reduced to 0-5, the time to peak of the early current was delayed by 1-1 msec, and the maximum chord conductances for the early(Ga) and late (GK) currents remained unchanged as compared with those in normal [Na+]o. 5. When [Ca2+] was reduced to 25% of normal, Ea shifted by an average of -20-3 mV, the maximum inward current was reduced to 0-5, the time to peak was delayed 3-1 msec, and Ga was significantly reduced, while GK was unaffected. 6. The early current, and its tail when repolarization was imposed, reversed direction from inward to outward when [Na+]o was reduced from 143 mM to zero, with [Ca2+]o remaining constant at 1-9 mM. 7. From the observations in 4, 5 and 6, it was concluded that Na+ is the main charge carrier for the early current, and that Ca2+ is important in regulating Ga. 8. The late current is outwards when [K+]o equals 5-9 mM, but inwards in some voltage range when [K+]o was elevated to 120 or 148 mM. K+ is the main charge carrier for the late current. 9. The equilibrium potential for the late current, EK, is about 15 mV more negative than the natural resting potential. 10. Prolonged holding of the preparations at voltages that differ significantly from the natural resting potential tends to shift EK in a way consistent with passive changes in [K+]i by the holding current. 11. The steady-state inactivation of the early current, h, is unusual. Inward current is macimum around the resting potential, and declines with both hyperpolarizing and depolarizing changes. Half-inactivation occurred with about 9 mV depolarization and 15 mV hyperpolarization. 12. The instantaneous current-voltage relations of both early and late currents are linear. The chord conductances Ga and GKare similar in form to those in other tissues.Keywords
This publication has 21 references indexed in Scilit:
- Excitation‐contraction coupling in voltage clamped uterine smooth muscleThe Journal of Physiology, 1973
- A voltage-clamp study of the adrenaline-hyperpolarization in the guinea-pig taenia coli.1972
- Effects of Ca removal on the smooth muscle of the guinea‐pig taenia coliThe Journal of Physiology, 1970
- Current-Voltage Relations in the Lobster Giant Axon Membrane Under Voltage Clamp ConditionsThe Journal of general physiology, 1962
- Delayed currents in myelinated nerve fibres of Xenopus laevis investigated with voltage clamp techniqueThe Journal of Physiology, 1962
- Contractile activities of mammalian smooth muscles in chloride-deficient mediaAmerican Journal of Physiology-Legacy Content, 1961
- The after‐effects of impulses in the giant nerve fibres of LoligoThe Journal of Physiology, 1956
- A quantitative description of membrane current and its application to conduction and excitation in nerveThe Journal of Physiology, 1952
- The dual effect of membrane potential on sodium conductance in the giant axon of LoligoThe Journal of Physiology, 1952
- Currents carried by sodium and potassium ions through the membrane of the giant axon of LoligoThe Journal of Physiology, 1952