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Published on: February 28, 2012
Ivabradine: A Unique and Intriguing Medication for Treating Cardiovascular Disease
James J Nawarskas1, Brandi N Bowman, Joe R Anderson
1From the *University of New Mexico College of Pharmacy, Albuquerque, NM; and †University of New Mexico Hospital, Albuquerque, NM.
Insights
Ivabradine, a pure heart rate-lowering drug, targets sinoatrial node If channels. While effective for angina, its clinical outcomes in heart failure are mixed, with benefits depending on baseline heart rate.
Area of Science:
- Cardiology
- Pharmacology
Background:
- Elevated resting heart rate is linked to cardiovascular morbidity and mortality.
- Lowering heart rate may benefit patients with cardiovascular disease, particularly ischemic heart disease and heart failure.
- Existing heart rate-lowering drugs like beta-blockers have undesirable side effects such as negative inotropy.
Purpose of the Study:
- To introduce ivabradine, a novel drug designed for pure heart rate reduction.
- To explain the mechanism of action of ivabradine.
- To review the clinical efficacy and safety of ivabradine in cardiovascular conditions.
Main Methods:
- Ivabradine selectively blocks hyperpolarization-activated cyclic nucleotide gated (If) channels in the sinoatrial node.
- This blockade disrupts the If ion current, prolonging diastolic depolarization and slowing sinoatrial node firing.
- The drug exhibits use-dependence, with effects most pronounced at higher heart rates.
Main Results:
- Ivabradine demonstrates efficacy as an antianginal agent, both as monotherapy and in combination with beta-blockers.
- Clinical trials have not shown a significant reduction in major adverse cardiovascular events with ivabradine.
- In heart failure patients, hemodynamic benefits were observed, but clinical outcomes were mixed and dependent on baseline heart rate.
Conclusions:
- Ivabradine is a pure heart rate-lowering drug with a unique mechanism of action.
- Its role in therapy remains somewhat unclear due to variable clinical trial outcomes.
- Further research is needed to identify optimal patient populations and concomitant therapies for ivabradine use.
Abstract:
There has been much research linking elevated resting heart rate to cardiovascular morbidity and mortality. Based on these findings, a lower resting heart rate would be of theoretical benefit in patients with cardiovascular disease. From a pathophysiologic perspective, a lower resting heart rate would be of particular benefit in patients with ischemic heart disease and/or heart failure. Although β-blockers and nondihydropyridine calcium channel blockers are effective at lowering heart rate, they have many other pharmacologic effects that may not be desirable in some patients, such as negative inotropy. Ivabradine is a drug designed to lower heart rate without any other demonstrable pharmacologic effects; in other words, a pure heart rate-lowering drug. It functions by blocking the hyperpolarization-activated cyclic nucleotide gated channels (f-channels) specific for the sinoatrial node and disrupting If ion current flow. This effectively prolongs diastolic depolarization and slows firing in the sinoatrial node, which lowers heart rate. The effects of ivabradine are most pronounced at higher heart rates (use-dependence), which is important in minimizing the development of symptomatic bradycardia. Clinical trials have demonstrated ivabradine to be an effective antianginal drug both alone and in combination with β-blocker therapy, although it has not been shown to produce a demonstrable effect on reducing major adverse cardiovascular events. In patients with heart failure, ivabradine has demonstrated many hemodynamic benefits, but its effect on clinical outcomes have been mixed and dependent on baseline heart rate, ie, the drug may be of benefit with higher baseline heart rates, but detrimental with low baseline heart rates. The adverse effects of ivabradine are not uncommon, but are rarely severe and include visual disturbances, bradycardia, and atrial fibrillation. Although ivabradine is a very interesting new agent, its variable benefits in large-scale clinical trials leave its exact place in therapy still somewhat nebulous. Unanswered questions include which patient populations would benefit most from this drug, and which concomitant medications would produce the best clinical outcomes when used with ivabradine.
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