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May 1, 1997AJP Heart and Circulatory Physiology27 citations

A chloride current component induced by hypertrophy in rat ventricular myocytes

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JBJean‐Pierre BénitahAGAna M. GómezCDCarmen Delgado

Structured PICO

P
Population
Hypertrophied rat left ventricular myocytes and control cells
I
Intervention
Electrophysiological characterization using whole cell voltage-clamp method, anthracene-9-carboxylic acid (9-AC), and extracellular Cl concentration variations
C
Comparator
Control (non-hypertrophied) rat ventricular myocytes
O
Outcome
Identification and characterization of membrane currents, specifically an outwardly rectifying Ba(2+)-resistant currentsurrogate

Hypertrophy in rat ventricular myocytes induces a novel chloride current component that shortens action potential duration, which may provide a protective mechanism against cardiac arrhythmias.

Abstract

The effect of hypertrophy on membrane currents of rat left ventricular myocytes was studied with the whole cell voltage-clamp method. We found that the slope of the total time-independent current density-voltage relationship was increased in hypertrophied cells. No change in the zero-current potential was observed. Surprisingly, the dominant time-independent current, the inward rectifier K+ current (measured as the Ba(2+)-sensitive current density) was unchanged. We therefore investigated the identity of the outwardly rectifying Ba(2+)-resistant current seen in the hypertrophied rat ventricular myocytes but not present in control cells. We found that this current 1) was not carried by monovalent cations, 2) was partially blocked by anthracene-9-carboxylic acid (9-AC), and 3) was sensitive to variations in extracellular Cl concentration. These findings are consistent with the current being carried at least partially by Cl-. The presence of an additional Cl(-)-dependent component in hypertrophied cells is supported by the actions of 9-AC on the measured action potentials (APs). 9-AC had no effect on control cells APs but prolonged hypertrophied cell APs. We conclude that a Cl- current component develops in hypertrophied rat heart cells. This component appears to shorten the AP duration and might thus provide protection from cardiac arrhythmias.

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Cite This Study

Bénitah et al. (1997) studied this question.

synapsesocial.com/papers/6a83f3afb5a613d8fb3e9d26https://doi.org/10.1152/ajpheart.1997.272.5.h2500
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Also Consider

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

  1. 1Normal regional distribution of membrane current density in rat left ventricle is altered in catecholamine-induced hypertrophy1999 · 60 citations
  2. 2Heterogeneity of the early outward current in ventricular cells isolated from normal and hypertrophied rat hearts.1993 · 141 citations
  3. 3Mechanisms underlying delayed afterdepolarizations in hypertrophied left ventricular myocytes of rats2001 · 59 citations
  4. 4The electrophysiological characteristics of hypertrophied ventricular myocytes from the spontaneously hypertensive rat1993 · 97 citations
  5. 5Effects of myocardial hypertrophy on transient outward current1994 · 41 citations