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March 1, 1998The Journal of Physiology80 citationsOpen Access

The effect of tetracaine on stimulated contractions, sarcoplasmic reticulum Ca2+ content and membrane current in isolated rat ventricular myocytes

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COC. L. OverendSOStephen O’NeillDEDavid Eisner

Structured PICO

P
Population
Isolated rat ventricular myocytes
I
Intervention
Tetracaine (100-200 microM)
C
Comparator
Control conditions (before addition and after removal of tetracaine)
O
Outcome
Stimulated contractions, sarcoplasmic reticulum Ca2+ content, and membrane current (L-type Ca2+ current and Na+-Ca2+ exchange current)surrogate

Tetracaine transiently depresses calcium-induced Ca2+ release in rat ventricular myocytes, which is subsequently compensated by an increase in sarcoplasmic reticulum Ca2+ content.

Abstract

The effects of tetracaine were examined on rat ventricular myocytes. In both field-stimulated and voltage-clamped cells tetracaine (100-200 microM) produced an initial decrease of contraction before a recovery towards the control level. Removal of tetracaine produced a transient overshoot of contraction to levels greater than the control. 2. The transient decrease of contraction produced by tetracaine was accompanied by a small transient increase in the integral of the L-type Ca2+ current and a larger transient decrease of the Na+-Ca2+ exchange current on repolarization. These are attributed to decreased systolic release of Ca2+. On removal of tetracaine there was an increase of the Na+-Ca2+ exchange current. Before the addition of tetracaine, calculated Ca2+ influx and efflux across the sarcolemma were approximately equal. On adding tetracaine, efflux was transiently less than influx and, on removal of tetracaine, efflux was greater than influx. 3. These changes in Ca2+ fluxes result in an increase of cell Ca2+ during exposure to tetracaine. The calculated magnitude of this increase was equal to that measured directly by applying caffeine (20 mM) to release sarcoplasmic reticulum (SR) Ca2+ and integrating the resulting Na+-Ca2+ exchange current. 4. It is concluded that the effects of tetracaine can be accounted for by depression of calcium-induced Ca2+ release (CICR). The response is transient because the inhibition is compensated for by an increase of SR Ca2+ content such that there is no steady-state effect on the magnitude of the systolic Ca2+ transient. The consequences of this result for the effects of other modulators of CICR are discussed.

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Cite This Study

Overend et al. (1998) studied this question.

synapsesocial.com/papers/6a1f7182d03d2b72e7236e98https://doi.org/10.1111/j.1469-7793.1998.759bs.x
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