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Published on: December 22, 2023
T-type Ca2+ channel blockade prevents sudden death in mice with heart failure
Hideyuki Kinoshita1, Koichiro Kuwahara, Makoto Takano
1Department of Medicine and Clinical Science, Kyoto University Graduated School of Medicine, Kyoto, Japan.
Background:
Pharmacological interventions for prevention of sudden arrhythmic death in patients with chronic heart failure remain limited. Accumulating evidence suggests increased ventricular expression of T-type Ca(2+) channels contributes to the progression of heart failure. The ability of T-type Ca(2+) channel blockade to prevent lethal arrhythmias associated with heart failure has never been tested, however.
Methods And Results:
We compared the effects of efonidipine and mibefradil, dual T- and L-type Ca(2+) channel blockers, with those of nitrendipine, a selective L-type Ca(2+) channel blocker, on survival and arrhythmogenicity in a cardiac-specific, dominant-negative form of neuron-restrictive silencer factor transgenic mice (dnNRSF-Tg), which is a useful mouse model of dilated cardiomyopathy leading to sudden death. Efonidipine, but not nitrendipine, substantially improved survival among dnNRSF-Tg mice. Arrhythmogenicity was dramatically reduced in dnNRSF-Tg mice treated with efonidipine or mibefradil. Efonidipine acted by reversing depolarization of the resting membrane potential otherwise seen in ventricular myocytes from dnNRSF-Tg mice and by correcting cardiac autonomic nervous system imbalance. Moreover, the R(-)-isomer of efonidipine, a recently identified, highly selective T-type Ca(2+) channel blocker, similarly improved survival among dnNRSF-Tg mice. Efonidipine also reduced the incidence of sudden death and arrhythmogenicity in mice with acute myocardial infarction.
Conclusions:
T-type Ca(2+) channel blockade reduced arrhythmias in a mouse model of dilated cardiomyopathy by repolarizing the resting membrane potential and improving cardiac autonomic nervous system imbalance. T-type Ca(2+) channel blockade also prevented sudden death in mice with myocardial infarction. Our findings suggest T-type Ca(2+) channel blockade is a potentially useful approach to preventing sudden death in patients with heart failure.
Insights
T-type calcium channel blockade shows promise in preventing sudden death from heart failure. Blocking these channels in mice with heart conditions improved survival and reduced lethal arrhythmias, suggesting a new therapeutic avenue.
Area of Science:
- Cardiology
- Pharmacology
- Molecular Biology
Background:
- Limited pharmacological options exist for preventing sudden arrhythmic death in chronic heart failure patients.
- Increased ventricular T-type calcium channels are implicated in heart failure progression.
- The efficacy of T-type calcium channel blockade in preventing heart failure-associated lethal arrhythmias remains untested.
Purpose of the Study:
- To investigate the potential of T-type calcium channel blockers in preventing sudden death and arrhythmias in heart failure models.
- To compare the effects of dual (T- and L-type) and selective L-type calcium channel blockers on survival and arrhythmogenicity.
Main Methods:
- Utilized a cardiac-specific, dominant-negative form of neuron-restrictive silencer factor transgenic mouse (dnNRSF-Tg) model of dilated cardiomyopathy.
- Administered efonidipine (dual blocker), mibefradil (dual blocker), and nitrendipine (selective L-type blocker).
- Assessed survival rates, arrhythmogenicity, ventricular myocyte resting membrane potential, and cardiac autonomic nervous system balance.
Main Results:
- Efonidipine significantly improved survival in dnNRSF-Tg mice, unlike nitrendipine.
- Efonidipine and mibefradil dramatically reduced arrhythmogenicity in dnNRSF-Tg mice.
- Efonidipine reversed resting membrane potential depolarization, corrected autonomic imbalance, and reduced sudden death and arrhythmias in acute myocardial infarction models.
Conclusions:
- T-type calcium channel blockade effectively reduced arrhythmias in a dilated cardiomyopathy mouse model.
- The mechanism involves repolarizing resting membrane potential and improving cardiac autonomic nervous system balance.
- T-type calcium channel blockade presents a potential strategy for preventing sudden death in heart failure patients.

