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August 1, 1993The Journal of Physiology126 citationsOpen Access

Ionic mechanisms of action potential prolongation at low temperature in guinea‐pig ventricular myocytes.

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TKTatsuto KiyosueMAMakoto AritaHMHikaru Muramatsu

Key Result

Low temperature (24-25 degrees C) prolonged the action potential duration at 95% repolarization in guinea-pig ventricular myocytes from 146 ms to 314 ms compared to control temperature.

Structured PICO

Does low temperature prolong action potential duration and alter membrane currents in guinea-pig ventricular myocytes?

P
Population
Guinea-pig ventricular myocytes studied using a tight-seal whole-cell clamp technique.
I
Intervention
Low temperature (24-25 degrees C)
C
Comparator
Control temperature (33-34 degrees C)
O
Outcome
Action potential duration at 95% repolarization and membrane currents (ICa, IK, IK1)surrogate

Low temperature prolongs action potential duration in guinea-pig ventricular myocytes primarily by decreasing calcium and potassium currents.

Main Result

Absolute Event Rate: 314% vs 146%

Abstract

We studied the effects of low temperature on the action potentials and membrane currents of guinea-pig ventricular myocytes, using a tight-seal whole-cell clamp technique. 2. The action potential duration at 95% repolarization was prolonged from 146 +/- 33 ms (mean +/- S.D., n = 6) at 33-34 degrees C (control temperature) to 314 +/- 83 ms at 24-25 degrees C (low temperature). 3. In whole-cell clamp experiments, low temperature decreased the calcium current (ICa), the delayed rectifier potassium current (IK), and the inwardly rectifying potassium current (IK1) with 'apparent' Q10 (temperature coefficient) values of 2.3 +/- 0.6 for ICa, 4.4 +/- 1.2 for IK tail current and 1.5 +/- 0.3 for IK1 (n = 7). 4. The effect of low temperature on IK was further studied in the presence of 0.6 microM nicardipine to block ICa. The decay phase of the IK tail consisted of two exponential components. The fast but not the slow component was highly sensitive to the temperature change with an apparent Q10 of 4.5. 5. We found that a component of time-independent current is also sensitive to the temperature. The current had a linear I-V relationship and remained almost unchanged after inhibition of Na(+) -K+ pump in K(+)-free external solution. 6. Using our mathematical model of the ventricular action potential (a modification from the DiFrancesco-Noble model), we simulated the action potential at low temperature by modifying some of the membrane currents, namely IK, IK1, ICa and a component of background current. It was shown that simultaneous changes in these currents could reproduce approximately 75% of the action prolongation induced by low temperature.

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Cite This Study

Kiyosue et al. (1993) studied Guinea-pig ventricular myocytes (n=7). Low temperature (24-25 degrees C) vs. Control temperature (33-34 degrees C) was evaluated on Action potential duration at 95% repolarization. Low temperature (24-25 degrees C) prolonged the action potential duration at 95% repolarization in guinea-pig ventricular myocytes from 146 ms to 314 ms compared to control temperature.

synapsesocial.com/papers/6a23759755bd20cf6fa5d6c2https://doi.org/10.1113/jphysiol.1993.sp019761
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