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June 1, 1995AJP Heart and Circulatory Physiology31 citations

Developmental changes of action potential configuration and I(to) in canine epicardium

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LPLinda M. PaciorettyBrookdale University Hospital and Medical Center
Robert F. Gilmour
Robert F. GilmourElectrophysiology

Key Points

  • This study aims to examine how action potential configuration and the transient outward current (I(to)) change as canines mature from fetal stages to adulthood.
  • Assessed transient outward current (I(to)) and action potential configuration in canine epicardium from fetal to 60 weeks of age.

Structured PICO

P
Population
Canine epicardium ranging in age from fetal to 60 weeks
I
Intervention
Developmental aging (fetal to 60 weeks)
C
Comparator
Different age groups (fetal, 2, 10, 20, 40, 60 weeks)
O
Outcome
Developmental changes of the transient outward current (I(to)) and action potential configuration (phase 1 amplitude and action potential duration)surrogate

The age-dependent reduction in phase 1 amplitude in canine epicardium does not coincide with increases in I(to) density, suggesting other mechanisms contribute to developmental repolarization changes.

Abstract

Developmental changes of the transient outward current (I(to)) and action potential configuration were determined in canine epicardium ranging in age from fetal to 60 wk. The contributions of I(to) to rapid initial repolarization and to terminal repolarization were estimated by measuring the amplitude of phase 1 of the action potential and action potential duration, respectively. Phase 1 amplitude decreased progressively from fetal to 40 wk and remained constant thereafter. Action potential duration decreased from fetal to 2 wk, increased to 20 wk, and tended to decrease thereafter. Peak I(to) at +40 mV increased progressively from 2 to 60 wk. However, I(to) density was less at 2-10 wk than at 20-60 wk. The time constant of decay of I(to) increased with age from 2 to 60 wk, whereas the steady-state voltage dependence of inactivation did not vary with age. The time constant for the initial rapid phase of recovery from inactivation decreased from 2 to 10 wk and remained constant thereafter. The time constant for the more slowly evolving phase did not vary with age. The observation that the age-dependent reduction in phase 1 amplitude did not necessarily coincide with significant increases in I(to) density suggests that maturation of other ionic currents or transport mechanisms may contribute to developmental alterations of phase 1 repolarization.

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Cite This Study

Pacioretty et al. (1995) studied this question.

synapsesocial.com/papers/6a2080ddc38d4935b3a5e320https://doi.org/10.1152/ajpheart.1995.268.6.h2513
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