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PMID: 5346531 Published · ppublish English Journal Article

Two components of the cardiac action potential. I. Voltage-time course and the effect of acetylcholine on atrial and nodal cells of the rabbit heart.

The Journal of general physiology ·Vol. 54 ·No. 5 ·1969-11-00 ·Pages 607-35

de Carvalho AP, Hoffman BF, de Carvalho MP

Abstract

Transmembrane potentials recorded from the rabbit heart in vitro were displayed as voltage against time (V, t display), and dV/dt against voltage (V, V or phase-plane display). Acetylcholine was applied to the recording site by means of a hydraulic system. Results showed that (a) differences in time course of action potential upstroke can be explained in terms of the relative magnitude of fast and slow phases of depolarization; (b) acetylcholine is capable of depressing the slow phase of depolarization as well as the plateau of the action potential; and (c) action potentials from nodal (SA and AV) cells seem to lack the initial fast phase. These results were construed to support a two-component hypothesis for cardiac electrogenesis. The hypothesis states that cardiac action potentials are composed of two distinct and physiologically separable "components" which result from discrete mechanisms. An initial fast component is a sodium spike similar to that of squid nerve. The slow component, which accounts for both a slow depolarization during phase 0 and the plateau, probably is dependent on the properties of a slow inward current having a positive equilibrium potential, coupled to a decrease in the resting potassium conductance. According to the hypothesis, SA and AV nodal action potentials are due entirely or almost entirely to the slow component and can therefore be expected to exhibit unique electrophysiological and pharmacological properties.

MeSH Terms
Acetylcholine/pharmacology Action Potentials Animals Heart Conduction System/drug effects Membrane Potentials Rabbits Time
Chemicals
Acetylcholine
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
de Carvalho A P
Hoffman B F
de Carvalho M P
References (30)
30 references, click to expand
  1. Outward membrane currents activated in the plateau range of potentials in cardiac Purkinje fibres.
    J Physiol. 1969 Jan;200(1):205-31 PMID: 5761944
  2. [Effects of hyposodic solutions on the cellular potentials of cardiac tissue of mammals].
    C R Hebd Seances Acad Sci. 1956 Jul 23;243(4):441-4 PMID: 13343630
  3. The effect of subthreshold potentials on the membrane current in cardiac Purkinje fibres.
    J Physiol. 1967 May;190(2):381-7 PMID: 6049010
  4. Two components of the cardiac action potential.
    Nature. 1966 Aug 27;211(5052):938-40 PMID: 5968298
  5. AN ANALYSIS OF THE STRIATED MUSCLE FIBER ACTION CURRENT.
    Biophys J. 1964 Mar;4:77-91 PMID: 14130439
  6. The sodium-potassium hypothesis as the basis of electrical activity in frog ventricle.
    J Physiol. 1960 Dec;154(2):385-407 PMID: 16992069
  7. Electrochemical aspects of physiological and pharmacological action in excitable cells. II. The action potential and excitation.
    Pharmacol Rev. 1958 Jun;10(2):165-273 PMID: 13566965
  8. Reconstruction of the repolarization process in cardiac Purkinje fibres based on voltage clamp measurements of membrane current.
    J Physiol. 1969 Jan;200(1):233-54 PMID: 5761948
  9. Electrophysiological evidence for specialized fiber types in rabbit atrium.
    Am J Physiol. 1959 Mar;196(3):483-8 PMID: 13627208
  10. [DEMONSTRATION OF 2 COMPONENTS IN THE RISING PHASE OF THE ACTION POTENTIAL IN FROG MYOCARIDAL FIBERS].
    Pflugers Arch Gesamte Physiol Menschen Tiere. 1965 Apr 6;283:187-202 PMID: 14311303
  11. Spread of activity through the atrioventricular node.
    Circ Res. 1960 Jul;8:801-9 PMID: 13808074
  12. The dual effect of calcium on the action potential of the frog's heart.
    J Physiol. 1966 May;184(2):291-311 PMID: 5921832
  13. On the negative inotropic effect in the cat's auricle.
    J Physiol. 1953 Jun 29;120(4):449-64 PMID: 13070220
  14. Vagal and sympathetic effects on the pacemaker fibers in the sinus venosus of the heart.
    J Gen Physiol. 1956 May 20;39(5):715-33 PMID: 13319658
  15. The components of membrane conductance in the giant axon of Loligo.
    J Physiol. 1952 Apr;116(4):473-96 PMID: 14946714
  16. The dual effect of membrane potential on sodium conductance in the giant axon of Loligo.
    J Physiol. 1952 Apr;116(4):497-506 PMID: 14946715
  17. The potassium component of membrane current in Purkinje fibers.
    Pflugers Arch Gesamte Physiol Menschen Tiere. 1967;296(4):308-27 PMID: 5239190
  18. Slow inactivation of currents in cardiac Purkinje fibres.
    J Physiol. 1968 Jul;197(1):233-53 PMID: 5675050
  19. A quantitative description of membrane current and its application to conduction and excitation in nerve.
    J Physiol. 1952 Aug;117(4):500-44 PMID: 12991237
  20. Generation and conduction of impulses in the heart as affected by drugs.
    Pharmacol Rev. 1963 Jun;15:277-332 PMID: 13994011
  21. Computed membrane currents in cardiac Purkinje fibers during voltage clamps.
    Biophys J. 1969 Apr;9(4):571-85 PMID: 5778186
  22. Is the fundamental electrical response of the single heart muscle cell a spike potential?
    J Gen Physiol. 1963 May;46:1029-46 PMID: 14021260
  23. Applications of Hodgkin-Huxley equations to excitable tissues.
    Physiol Rev. 1966 Jan;46(1):1-50 PMID: 5323501
  24. [Further data concerning the role of Na+ and Ca++ ions on the electrophysiologic properties of cardiac membranes; existence of a slow canal].
    C R Acad Sci Hebd Seances Acad Sci D. 1968 Feb 19;266(8):802-5 PMID: 4967099
  25. The mechanism of oscillatory activity at low membrane potentials in cardiac Purkinje fibres.
    J Physiol. 1969 Jan;200(1):255-65 PMID: 5761950
  26. INFLUENCE OF LITHIUM IONS ON THE TRANSMEMBRANE POTENTIAL AND CATION CONTENT OF CARDIAC CELLS.
    J Gen Physiol. 1964 Jan;47:501-30 PMID: 14100967
  27. Rectifying properties of heart muscle.
    Nature. 1960 Nov 5;188:495 PMID: 13717088
  28. The time and voltage dependence of the slow outward current in cardiac Purkinje fibres.
    J Physiol. 1966 Oct;186(3):632-62 PMID: 5972158
  29. A strand of cardiac muscle. Its ultrastructure and the electrophysiological implications of its geometry.
    J Cell Biol. 1967 Apr;33(1):103-29 PMID: 6033930
  30. Current-voltage relations of Purkinje fibres in sodium-deficient solutions.
    J Physiol. 1963 Apr;166:225-40 PMID: 13960731
Article Info
Journal
The Journal of general physiology
Abbr.
J Gen Physiol
ISSN
0022-1295
Published
1969-11-00
Pages
607-35
Language
English
Region
United States
NLM ID
2985110R
PMCID
PMC2225946
Subset
IM
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