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October 1, 1993Circulation Research302 citations

T-type Ca2+ current is expressed in hypertrophied adult feline left ventricular myocytes.

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HNHanne NussSHSteven R. Houser

Key Points

  • This research aims to determine the presence of T-type Ca2+ currents in hypertrophied adult feline left ventricular myocytes.
  • Included 21 hypertrophied adult feline left ventricular myocytes

Structured PICO

P
Population
Adult feline left ventricular myocytes (n=21 with long-standing pressure-overload-induced hypertrophy, n=17 normal)
I
Intervention
Long-standing pressure-overload-induced hypertrophy
C
Comparator
Normal adult feline ventricular myocytes
O
Outcome
Presence of macroscopic T-type Ca2+ currentssurrogate

T-type Ca2+ channels are reexpressed in adult feline ventricular myocytes following long-standing pressure-overload-induced hypertrophy, which may increase the likelihood of arrhythmias.

Abstract

Macroscopic T-type Ca2+ currents, which are often observed in fetal and neonatal cardiac muscle cells, were not found in normal (0 of 17) adult feline ventricular myocytes. However, they were present in most (15 of 21) myocytes isolated from adult feline left ventricles with long-standing pressure-overload-induced hypertrophy. This is the first study to provide evidence in a large mammal, such as the cat, that T-type Ca2+ channels may be reexpressed in adults in association with hypertrophy resulting from slow progressive pressure overload. Importantly, this expression was stable for the duration of the hypertrophy process and was not associated with abrupt pressure overload. T-type Ca2+ currents were separated from L-type Ca2+ currents by exploiting the differences in their voltage dependence of steady-state inactivation. Depolarizations from -80 mV revealed a rapidly activating inward current that peaked in magnitude at -30 mV (-1.8 +/- 0.9 mean +/- SD pA/pF) and fully inactivated within 100 milliseconds in 15 of 21 hypertrophied myocytes studied. Further depolarizations activated progressively less T-type Ca2+ current, so that at +10 mV the L-type Ca2+ current predominated. In the hypertrophied myocytes that demonstrated both T-type and L-type Ca2+ currents, two distinct peaks occurred in their current-voltage relations. T-type Ca2+ currents were not evident in any of the 17 normal adult feline left ventricular myocytes studied. The purpose of T-type Ca2+ currents in hypertrophy is unclear. However, their presence may make hypertrophied myocardium more prone to spontaneous action potentials and increase the likelihood for arrhythmias in partially depolarized hypertrophied myocardium.

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Cite This Study

Nuss et al. (1993) studied this question.

synapsesocial.com/papers/6a728aeae5469ee92be2744ahttps://doi.org/10.1161/01.res.73.4.777
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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 in normal and hypertrophied feline ventricular myocytes1989 · 124 citations
  2. 2Protooncogene induction and reprogramming of cardiac gene expression produced by pressure overload.1988 · 871 citations
  3. 3Increase in T-type calcium current in atrial myocytes from adult rats with growth hormone-secreting tumors.1990 · 104 citations
  4. 4Macroscopic and unitary properties of physiological ion flux through T‐type Ca2+ channels in guinea‐pig heart cells.1992 · 181 citations
  5. 5Post‐natal disappearance of transient calcium channels in mouse skeletal muscle: effects of denervation and culture.1988 · 90 citations