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June 13, 2026Journal of the American College of Cardiology988 citations

The Sympathetic Nervous System in Heart Failure

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FTFilippos TriposkiadisGKGeorge KarayannisGGGrigorios Giamouzis

Key Result

Modulation of the sympathetic nervous system, primarily through beta-blockers and renin-angiotensin-aldosterone axis inhibitors, forms the mainstay of medical management for chronic heart failure.

Key Points

  • The research examines the role of the sympathetic nervous system in heart failure progression and outcomes.
  • Review of current literature on sympathetic nervous system activation and its effects on heart failure.
  • Analysis of adrenergic receptor function and pharmacological interventions.
  • Examination of compensatory mechanisms in heart failure.
  • Sympathetic nervous system activation initially increases cardiac output but contributes to heart failure progression.
  • Dysregulated beta-adrenergic receptor signaling worsens cardiac function over time.
  • Existing treatments focus on beta-AR blockers, while sympatholytics may be harmful.

Structured PICO

P
Population
Patients with heart failure
I
Intervention
Modulation of sympathetic nervous system activity (including beta-blockers, renin-angiotensin-aldosterone axis inhibitors, central sympatholytics, and sympathomimetic inotropes)
O
Outcome
Morbidity and mortality

This review outlines the pathophysiological role of the sympathetic nervous system in heart failure and reinforces the mechanistic rationale for guideline-directed medical therapies like beta-blockers.

Abstract

Heart failure is a syndrome characterized initially by left ventricular dysfunction that triggers countermeasures aimed to restore cardiac output. These responses are compensatory at first but eventually become part of the disease process itself leading to further worsening cardiac function. Among these responses is the activation of the sympathetic nervous system (SNS) that provides inotropic support to the failing heart increasing stroke volume, and peripheral vasoconstriction to maintain mean arterial perfusion pressure, but eventually accelerates disease progression affecting survival. Activation of SNS has been attributed to withdrawal of normal restraining influences and enhancement of excitatory inputs including changes in: 1) peripheral baroreceptor and chemoreceptor reflexes; 2) chemical mediators that control sympathetic outflow; and 3) central integratory sites. The interface between the sympathetic fibers and the cardiovascular system is formed by the adrenergic receptors (ARs). Dysregulation of cardiac beta(1)-AR signaling and transduction are key features of heart failure progression. In contrast, cardiac beta(2)-ARs and alpha(1)-ARs may function in a compensatory fashion to maintain cardiac inotropy. Adrenergic receptor polymorphisms may have an impact on the adaptive mechanisms, susceptibilities, and pharmacological responses of SNS. The beta-AR blockers and the inhibitors of the renin-angiotensin-aldosterone axis form the mainstay of current medical management of chronic heart failure. Conversely, central sympatholytics have proved harmful, whereas sympathomimetic inotropes are still used in selected patients with hemodynamic instability. This review summarizes the changes in SNS in heart failure and examines how modulation of SNS activity may affect morbidity and mortality from this syndrome.

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Cite This Study

Triposkiadis et al. (2009) conducted a review in Heart failure. Modulation of the sympathetic nervous system, primarily through beta-blockers and renin-angiotensin-aldosterone axis inhibitors, forms the mainstay of medical management for chronic heart failure.

synapsesocial.com/papers/6a2dc93752a4f2343f8e1c73https://doi.org/10.1016/j.jacc.2009.05.015
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