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November 1, 1977The Journal of General Physiology154 citationsOpen Access

Effects of low-chloride solutions on action potentials of sheep cardiac Purkinje fibers.

JKJames L. KenyonWGW R Gibbons

Key Result

Low-chloride solutions did not affect phase 1 of the action potential in sheep cardiac Purkinje fibers, causing only a transient 3-6 mV depolarization in resting potential.

Structured PICO

P
Population
Sheep cardiac Purkinje fibers
I
Intervention
Low-chloride solutions made by substituting sodium propionate, acetylglycinate, methylsulfate, or methanesulfonate for the NaCl of Tyrode's solution (with adjusted calcium)
C
Comparator
Normal Tyrode's solution
O
Outcome
Action potential characteristics (phase 1, notch, duration, and resting potential)surrogate

In sheep cardiac Purkinje fibers, low-chloride solutions do not significantly alter phase 1 of the action potential, suggesting that a time- and voltage-dependent chloride current plays little role in its generation.

Limitations

  • Propionate gave qualitatively variable results in preliminary experiments

Abstract

The rapid repolarization during phase 1 of the action potential of sheep cardiac purkinje fibers has been attributed to a time- and voltage-dependent chloride current. In part, this conclusion was based on experiments that showed a substantial slowing of phase 1 when larger, presumably impermeant, anions were substituted for chloride in tyrode's solution. We have re- examined the electrical effects of low-chloride solutions. We recorded action potentials of sheep cardiac purkinje fibers in normal tyrode's solution and in low-chloride solutions made by substituting sodium propionate, acetylglycinate, methylsulfate, or methanesulfonate for the NaCl of Tyrode's solution. Total calcium was adjusted to keep calcium ion activity of test solutions equal to that of control solutions. Propionate gave qualitatively variable results in preliminary experiments; it was not tested further. Low-chloride solutions made with the other anions gave much more consistent results: phase 1 and the notch that often occurs between phases 1 and 2 were usually unaffected, and the action potential duration usually increased. The only apparent change in the resting potential was a transient 3-6 mV depolarization when low-chloride solution was first admitted to the chamber, and a symmetrical transient hyperpolarization when chloride was returned to normal. If a time- and voltage-dependent chloride current exists in sheep cardiac purkinje fibers, our results suggest that it plays little role in generating phase 1 of the action potential.

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Cite This Study

Kenyon et al. (1977) studied Sheep cardiac Purkinje fibers. Low-chloride solutions vs. Normal Tyrode's solution was evaluated on Action potential phase 1 and duration. Low-chloride solutions did not affect phase 1 of the action potential in sheep cardiac Purkinje fibers, causing only a transient 3-6 mV depolarization in resting potential.

synapsesocial.com/papers/6a239960ffed3004559edee7https://doi.org/10.1085/jgp.70.5.635
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Also Consider

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

  1. 1The dependence of plateau currents in cardiac Purkinje fibres on the interval between action potentials1972 · 118 citations
  2. 2Slow inward current and contraction of sheep cardiac Purkinje fibers.1975 · 98 citations
  3. 3Reconstruction of the electrical activity of cardiac Purkinje fibres.1975 · 565 citations
  4. 4High Potassium and Low Sodium Contractures in Sheep Cardiac Muscle1971 · 51 citations
  5. 5Disssociation constants of organic acids in aqueous solution1960 · 489 citations