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December 1, 1989AJP Heart and Circulatory Physiology153 citations

Contributions of a transient outward current to repolarization in human atrium

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ESE F ShibataTDTaylor DruryHRH. Refsum

Key Points

  • The aim is to evaluate how a transient outward current contributes to the repolarization of action potentials in human atrial tissue.
  • Used microelectrode recordings with enzymatic cell dispersion methods.

Structured PICO

P
Population
Isolated single myocytes and excised segments of human right atrium
I
Intervention
4-aminopyridine (4-AP; 0.5 mM) application and stimulus frequency variation
C
Comparator
Baseline/absence of 4-AP
O
Outcome
Transmembrane action potentials, ionic currents, action potential shape changes, and phasic tensionsurrogate

A large transient outward potassium current plays a significant role in the early repolarization and force generation of human right atrial tissue.

Abstract

Conventional microelectrode recordings combined with enzymatic cell dispersion methods and a single microelectrode voltage-clamp technique were used to record transmembrane action potentials and ionic currents in isolated single myocytes and in excised segments of human right atrium. Recordings of the outward current(s), which is responsible for the resting potential and early repolarization of the action potential in human right atrium, consistently showed that this tissue has 1) a relatively small inwardly rectifying background potassium current (IK1) which generates the resting potential in mammalian ventricular tissue and Purkinje fibers, and 2) a large time- and voltage-dependent, but Ca2(+)-independent, transient outward current. A somewhat similar K+ current was originally described in neurons and recently has also been identified in a variety of mammalian cardiac tissues. As expected from previous work, this transient outward current in human atrium is blocked by 4-aminopyridine (4-AP; 0.5 mM) and exhibits time- and voltage-dependent inactivation and reactivation. Measurements of action potential shape changes and phasic tension as a function of stimulus frequency, or after 4-AP application, show that in human atrium this current can produce pronounced changes in both the early repolarization of the action potential and force generation.

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Cite This Study

Shibata et al. (1989) studied this question.

synapsesocial.com/papers/6a209113f14cd0624eb41d1fhttps://doi.org/10.1152/ajpheart.1989.257.6.h1773
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Also Consider

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

  1. 1Outward currents underlying repolarization in human atrial myocytes1995 · 64 citations
  2. 2Comparison of potassium currents in rabbit atrial and ventricular cells.1988 · 386 citations
  3. 3Ionic currents activated during hyperpolarization of single right atrial myocytes from cat heart.1991 · 48 citations
  4. 4Delayed rectifier outward current and repolarization in human atrial myocytes.1993 · 202 citations
  5. 5Description of a Nonselective Cation Current in Human Atrium1995 · 38 citations