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July 1, 1992The Journal of Physiology198 citationsOpen Access

A persistent sodium current in rat ventricular myocytes.

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DSDavid A. SaintYJYuefeng JuPGPeter W. Gage

Structured PICO

P
Population
Single ventricular myocytes acutely dissociated from adult rat hearts
I
Intervention
Tetrodotoxin (TTX) at 50 microM and 0.1 microM, and voltage-clamp depolarization
C
Comparator
Absence of TTX; different voltage potentials
O
Outcome
Characteristics of the persistent sodium current (voltage dependence, sensitivity to TTX, inactivation)surrogate

Identifies a distinct persistent sodium current in adult rat ventricular myocytes with different voltage dependence and TTX sensitivity than the transient sodium current.

Abstract

The tight seal, whole-cell, voltage-clamp technique was used to record currents from single ventricular myocytes acutely dissociated from adult rat hearts. Subtraction of currents recorded in the presence and absence of tetrodotoxin (TTX, 50 microM) revealed a small, persistent, inward current following a much larger, transient, inward current. 2. Both currents were sodium currents because they reversed close to the sodium equilibrium potential and were depressed when choline was substituted for extracellular sodium. 3. The persistent sodium current could be recorded when the transient current had been inactivated with conditioning depolarization. Only slight inactivation of the persistent current occurred during depolarizing pulses lasting up to 900 ms. 4. A lower concentration of TTX (0.1 microM) blocked the persistent sodium current while having little effect on the transient sodium current. 5. The persistent sodium current was activated at more negative potentials than the transient sodium current. It cannot have been a window current because it was recorded at positive potentials when the transient current was completely inactivated. 6. Because the persistent and transient sodium currents had a different voltage dependence and sensitivity to TTX, it was concluded that different channels are responsible for the two currents.

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Cite This Study

Saint et al. (1992) studied this question.

synapsesocial.com/papers/6a1fe2953f3a87967f2e44f6https://doi.org/10.1113/jphysiol.1992.sp019225
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