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January 1, 1969The Journal of Physiology459 citationsOpen Access

Outward membrane currents activated in the plateau range of potentials in cardiac Purkinje fibres

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DNDenis NobleElectrophysiology
Richard W. Tsien
Richard W. TsienPohang University of Science and Technology

Key Result

Voltage clamp analysis of cardiac Purkinje fibres revealed two distinct slow outward currents, i(x1) and i(x2), with time constants of ~0.5 sec and ~4 sec at the plateau, respectively.

Structured PICO

P
Population
Cardiac Purkinje fibres
I
Intervention
Voltage clamp at action potential plateau potentials
O
Outcome
Membrane current changes (i(x1) and i(x2) components)surrogate

This study characterizes two distinct slow outward membrane currents activated during the action potential plateau in cardiac Purkinje fibres, contributing to the fundamental understanding of cardiac repolarization.

Abstract

The membrane currents in Purkinje fibres under voltage clamp conditions have been investigated in the range of potentials at which the action potential plateau occurs. The results show that in this range slow outward current changes occur which are quite distinct from the potassium current activated in the pace-maker range of potentials.2. The time course of current change in response to step voltage changes is non-exponential. At each potential the current changes may be analysed in terms of the sum of two exponential changes and this property has been used to dissect the currents into two components, i(x1) and i(x2), both of which have been found to obey kinetics of the Hodgkin-Huxley type.3. The first component, i(x1), is activated with a time constant of about 0.5 sec at the plateau. At more positive and more negative potentials the time constants are shorter. The steady-state degree of activation varies from 0 at about -50 mV to about 1 at +20 mV. The instantaneous current-voltage relation is an inward-going rectifier but shows no detectable negative slope. In normal Tyrode solution (K(0) = 4 mM) the reversal potential is about -85 mV.4. The second component, i(x2), is activated extremely slowly and the time constant at the plateau is about 4 sec. The steady-state activation curve varies from 0 at about -40 mV to 1 at about +20 mV. The instantaneous current-voltage relation is nearly linear. The reversal potential occurs between -50 and -20 mV in different preparations.5. It is suggested that these currents are carried largely by K ions, but that some other ions (e.g. Na) also contribute so that the reversal potentials are positive to E(K).6. The relation of these results to previous work on delayed rectification in cardiac muscle is discussed.

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Cite This Study

Noble et al. (1969) studied Cardiac electrophysiology. Voltage clamp was evaluated on Membrane currents (i(x1) and i(x2)). Voltage clamp analysis of cardiac Purkinje fibres revealed two distinct slow outward currents, i(x1) and i(x2), with time constants of ~0.5 sec and ~4 sec at the plateau, respectively.

synapsesocial.com/papers/6a0a14750e219f8cdd346c63https://doi.org/10.1113/jphysiol.1969.sp008689
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Reconstruction of the repolarization process in cardiac Purkinje fibres based on voltage clamp measurements of membrane current1969 · 126 citations
  2. 2The time and voltage dependence of the slow outward current in cardiac Purkinje fibres1966 · 198 citations
  3. 3THE POTASSIUM CURRENT UNDERLYING DELAYED RECTIFICATION IN CAT VENTRICULAR MUSCLE1978 · 133 citations
  4. 4Reconstruction of the electrical activity of cardiac Purkinje fibres.1975 · 565 citations
  5. 5The kinetics and rectifier properties of the slow potassium current in cardiac Purkinje fibres1968 · 490 citations