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PMID: 13584729 Published · ppublish English Journal Article

The mode of action of quinidine on isolated rabbit atria interpreted from intracellular potential records.

British journal of pharmacology and chemotherapy ·Vol. 13 ·No. 3 ·1958-09-00 ·Pages 276-87

VAUGHAN WILLIAMS EM

Abstract

An attempt has been made to show why quinidine, which has long been known not to lengthen the duration of the cardiac action potential, measured with external electrodes, and also not to lengthen, and sometimes to shorten, the absolute refractory period, nevertheless reduces the maximum frequency at which atria can respond to a stimulus. Simultaneous measurements have been made in electrically driven isolated rabbit atria of contractions, conduction velocity and intracellular potentials before and during exposure to a wide range of concentrations of quinidine sulphate. The resting potential remained undiminished, in contrast to the effect of quinidine on Purkinje fibres. In the therapeutic range of doses, up to 10 mg./l., the half-time for repolarization was either shortened or unchanged, thus providing an explanation for the failure of quinidine to prolong the absolute refractory period. In contrast, even at low concentrations of quinidine, conduction velocity and the rate of rise of the action potential were greatly slowed, and the height of the overshoot was reduced. The terminal phase of the action potential was prolonged. It is known that the rate of rise of the action potential is a function of the level of repolarization at which an impulse takes off (the more negative the take-off point, the faster the rate of rise). Normally, a stimulus introduced when repolarization has proceeded to 2/3 of the resting potential evokes a response with a rate of rise fast enough for propagation, so that the duration of the terminal 1/3 of the phase of repolarization has no influence upon the length of the effective refractory period. In the presence of quinidine, however, the rate of rise itself was directly reduced, thus repolarization had to proceed further before the critical take-off point was reached at which the rate of rise was fast enough for propagation, and the duration of the terminal phase of repolarization thus became significant. It has been concluded that quinidine prolongs the effective refractory period by slowing the phase of depolarization, without any change necessarily occurring in the half-time for repolarization, which determines the absolute refractory period. Acetylcholine accelerated the rate of rise of the action potential even in the presence of high concentrations of quinidine.

Keywords
DEFECTS CONGENITAL/effect of drugs on QUINIDINE/effects
MeSH Terms
Action Potentials Animals Congenital Abnormalities/drug effects Heart Heart Atria Membrane Potentials Purkinje Fibers Quinidine/pharmacology Rabbits
Chemicals
Quinidine
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
VAUGHAN WILLIAMS E M
References (21)
21 references, click to expand
  1. The membrane resting and action potentials of the cat auricle.
    J Physiol. 1953 Feb 27;119(2-3):139-52 PMID: 13035740
  2. [The effect of temperature on the action current of excised Purkinje fibers, measured with an intracellular electrode].
    Pflugers Arch. 1953;258(3):243-60 PMID: 13145279
  3. Quinidine and anticholinesterases on rabbit auricles.
    Br J Pharmacol Chemother. 1954 Mar;9(1):42-8 PMID: 13149774
  4. Effect of heart rate on cardiac membrane potentials and the unipolar electrogram.
    Am J Physiol. 1954 Oct;179(1):123-30 PMID: 13207399
  5. Pacemaker potentials: the excitation of isolated rabbit auricles by acetylcholine at low temperatures.
    J Physiol. 1956 Jan 27;131(1):186-99 PMID: 13296056
  6. The effect of KCl on atrial fibrillation caused by acetylcholine.
    Circ Res. 1956 May;4(3):288-92 PMID: 13317020
  7. [Action of quinidine on the elementary electric activity of the conduction tissue of the dog heart].
    C R Hebd Seances Acad Sci. 1956 Feb 27;242(9):1225-8 PMID: 13317146
  8. The refractory period of atria isolated from mammalian hearts.
    J Physiol. 1956 Jun 28;132(3):611-29 PMID: 13332598
  9. [Influence of temperature and of potassium and sodium ions on the duration of the cardiac action potential in relation to frequency].
    Arch Int Physiol Biochim. 1956 Jun;64(3):513-4 PMID: 13341171
  10. [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
  11. Ventricular fibrillation and ion transport.
    Circ Res. 1957 Jan;5(1):98-104 PMID: 13396971
  12. Refractoriness in cardiac muscle.
    Am J Physiol. 1957 Sep;190(3):473-82 PMID: 13470077
  13. A possible mechanism of action of quinidine.
    Am J Physiol. 1957 Sep;190(3):492-4 PMID: 13470079
  14. Effects of low temperatures on transmembrane potentials of single fibers of the rabbit atrium.
    Circ Res. 1957 Nov;5(6):664-9 PMID: 13473067
  15. The production of regenerative responses in crayfish muscle fibres by the action of calcium, strontium and barium.
    J Physiol. 1958 Feb 17;140(2):59-60P PMID: 13514709
  16. A comparison of antifibrillatory drugs in the heart-lung preparation.
    Br J Pharmacol Chemother. 1958 Mar;13(1):107-8 PMID: 13523146
  17. Movements of labelled calcium in squid giant axons.
    J Physiol. 1957 Sep 30;138(2):253-81 PMID: 13526124
  18. The effect of the cardiac membrane potential on the rapid availability of the sodium-carrying system.
    J Physiol. 1955 Jan 28;127(1):213-24 PMID: 14354640
  19. Cardiac resting and action potentials recorded with an intracellular electrode.
    J Physiol. 1951 Sep;115(1):74-94 PMID: 14889431
  20. Antifibrillatory drugs.
    Medicine (Baltimore). 1950 May;29(2):123-68 PMID: 15416504
  21. The recovery process of excitable tissues: Part II.
    J Physiol. 1921 Aug 3;55(3-4):193-225 PMID: 16993504
Article Info
Journal
British journal of pharmacology and chemotherapy
Abbr.
Br J Pharmacol Chemother
ISSN
0366-0826
Published
1958-09-00
Pages
276-87
Language
English
Region
England
NLM ID
0154627
PMCID
PMC1481757
Subset
OM
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