Ivabradine added to usual care in patients with heart failure: a systematic review with meta-analysis and trial

Mathias Maagaard1, Emil Eik Nielsen2,3, Naqash Javaid Sethi2

  • 1Copenhagen Trial Unit, Centre for Clinical Intervention Research, Copenhagen University Hospital, Copenhagen, Denmark mathias.maagaard@ctu.dk.

BMJ Evidence-Based Medicine
|November 18, 2021
PubMed

Insights

Ivabradine does not appear to reduce all-cause mortality in heart failure patients, but may reduce serious adverse events. However, it increases risks of atrial fibrillation and bradycardia, with uncertain effects on quality of life.

Area of Science:

  • Cardiology and Clinical Pharmacology
  • Evidence-Based Medicine and Systematic Reviews

Background:

  • Heart failure (HF) is a complex clinical syndrome requiring optimized treatment strategies.
  • Ivabradine is a heart rate-lowering agent used in HF management, but its overall benefit-harm profile requires thorough assessment.

Purpose of the Study:

  • To systematically evaluate the beneficial and harmful effects of adding ivabradine to standard care for heart failure patients.
  • To synthesize evidence from randomized clinical trials using meta-analysis and trial sequential analysis.

Main Methods:

  • Conducted a systematic review and meta-analysis of 109 randomized clinical trials involving 26,567 participants.
  • Utilized trial sequential analysis to control for random errors and the GRADE approach to assess evidence certainty.
  • Extracted data on all-cause mortality, serious adverse events, quality of life, cardiovascular mortality, myocardial infarction, and non-serious adverse events.

Main Results:

  • High certainty evidence indicates ivabradine does not significantly reduce all-cause mortality (RR=0.94; 95% CI 0.88-1.01).
  • Low certainty evidence suggests a potential reduction in serious adverse events (RR=0.90; 95% CI 0.87-0.94), primarily due to decreased hospitalizations and cardiac failure.
  • Ivabradine significantly increased the risk of atrial fibrillation (RR=1.19; 95% CI 1.04-1.35) and bradycardia (RR=3.95; 95% CI 1.88-8.29).

Conclusions:

  • Current high certainty evidence suggests ivabradine does not impact all-cause or cardiovascular mortality in heart failure.
  • The drug appears to increase the risk of atrial fibrillation and bradycardia, alongside non-serious adverse events.
  • The observed effects on quality of life are small and of uncertain clinical relevance, necessitating careful consideration of the benefit-harm balance.
Abstract

Related Concept Videos

Heart Failure VI: Adjunct Therapies01:22

Heart Failure VI: Adjunct Therapies

Additional therapies for treating patients with heart failure (HF) may include procedural interventions, supplemental oxygen, the management of sleep disorders, and nutritional therapy.Procedural InterventionsImplantable Cardioverter-Defibrillator: For patients at risk of life-threatening arrhythmias due to severe left ventricular dysfunction, an Implantable Cardioverter-Defibrillator (ICD) can detect and terminate these arrhythmias, preventing sudden cardiac death and improving survival rates.
53
Heart Failure V: Medical Management01:30

Heart Failure V: Medical Management

Medical Management of Acute Decompensated Heart Failure (ADHF)The primary goals of therapy for patients hospitalized with acute decompensated heart failure (ADHF) include:Relieving symptomsOptimizing volume statusSupporting oxygenation and ventilationMaintaining cardiac output (CO) and end-organ perfusionIdentifying and addressing the cause of ADHFPreventing complicationsProviding patient education on factors precipitating HF exacerbationPlanning for dischargeOngoing monitoring and assessment...
47
Heart Failure Drugs: Inhibitors of Renin-Angiotensin System01:26

Heart Failure Drugs: Inhibitors of Renin-Angiotensin System

The activation of the sympathetic nervous system and the renin-angiotensin-aldosterone system (RAAS) contributes to cardiac remodeling, and inhibiting the RAAS is a pharmacological target in heart failure management. As a result, neurohumoral modulation is a crucial treatment principle for managing heart failure. This approach involves using medications like ACE inhibitors (ACEIs), angiotensin receptor blockers (ARBs), β-blockers, mineralocorticoid receptor antagonists (MRAs), and neutral...
561
Heart Failure Drugs: β-Blockers01:22

Heart Failure Drugs: β-Blockers

β-adrenergic antagonists, commonly known as β-blockers, block the effects of sympathetic neurotransmitters such as noradrenaline (NA) and adrenaline (ADR). They have several beneficial effects in heart failure treatment. They reduce heart rate, the force of contraction, and cardiac muscle relaxation. They also slow the atrial-ventricular conduction rate and raise the threshold for arrhythmias. The concentration of β-blockers determines their effects on bronchodilation,...
477
Heart Failure Drugs: Inotropic Agents01:26

Heart Failure Drugs: Inotropic Agents

Positive inotropic agents are commonly used as the first line of treatment for heart failure. One such agent is digoxin, derived from the genus Digitalis, which has been known for centuries but effectively utilized since 1785. However, these cardiac glycosides can have potentially toxic effects due to their mechanism of action, which involves inhibiting Na+/K+-ATPase and increasing contractility. Digoxin is absorbed orally and distributed in various tissues, including the CNS. It has a long...
819
Heart Failure Drugs: Diuretics01:22

Heart Failure Drugs: Diuretics

Heart failure and kidney perfusion are interconnected in a complex way. Reduced renal perfusion and venous congestion are two significant factors that contribute to renal dysfunction in heart failure. The kidneys, primarily responsible for fluid balance in the body, are adversely affected due to compromised cardiac output and increased venous pressure. In response to reduced renal perfusion, the kidneys activate neurohumoral mechanisms to restore balance. However, these mechanisms can be...
523