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Updated: May 23, 2026

Implantation of an Isoproterenol Mini-Pump to Induce Heart Failure in Mice
Published on: October 3, 2019
Enhanced interleukin-1 activity contributes to exercise intolerance in patients with systolic heart failure
Benjamin W Van Tassell1, Ross A Arena, Stefano Toldo
1School of Pharmacy, Virginia Commonwealth University, Richmond, Virginia, United States of America. bvantassell@vcu.edu
Insights
Interleukin-1β (IL-1β) drives poor exercise tolerance in heart failure (HF). Blocking IL-1β with anakinra improved exercise capacity in a pilot study, suggesting a new treatment strategy for HF patients.
Area of Science:
- Cardiology
- Immunology
- Translational Medicine
Background:
- Heart failure (HF) is linked to increased inflammation, with elevated Interleukin-1β (IL-1β) contributing to disease progression and reduced exercise tolerance.
- IL-1β, a pro-inflammatory cytokine, has negative inotropic effects and is chronically elevated in HF patients.
Purpose of the Study:
- To investigate the role of IL-1β in HF-associated exercise intolerance.
- To evaluate the efficacy of IL-1β blockade using anakinra in a pilot clinical trial for HF patients.
Main Methods:
- A mouse model of IL-1β-induced left ventricular (LV) dysfunction was established.
- A pilot clinical trial (NCT01300650) assessed anakinra's effect on cardiopulmonary exercise parameters in HF patients with elevated inflammation.
Main Results:
- IL-1β induced significant LV dysfunction in mice, which was preventable by anakinra.
- In HF patients, anakinra treatment led to significant improvements in peak oxygen consumption (VO(2)) and ventilator efficiency (VE/VCO(2) slope).
Conclusions:
- IL-1β activity is implicated in the poor exercise tolerance observed in systolic heart failure.
- IL-1β blockade represents a potential novel therapeutic strategy for managing heart failure.
Background:
Heart failure (HF) is a complex clinical syndrome characterized by impaired cardiac function and poor exercise tolerance. Enhanced inflammation is associated with worsening outcomes in HF patients and may play a direct role in disease progression. Interleukin-1β (IL-1β) is a pro-inflammatory cytokine that becomes chronically elevated in HF and exerts putative negative inotropic effects.
Methods And Results:
We developed a model of IL-1β-induced left ventricular (LV) dysfunction in healthy mice that exhibited a 32% reduction in LV fractional shortening (P<0.001) and a 76% reduction in isoproterenol response (P<0.01) at 4 hours following a single dose of IL-1β 3 mcg/kg. This phenotype was reproducible in mice injected with plasma from HF patients and fully preventable by pretreatment with IL-1 receptor antagonist (anakinra). This led to the design and conduct of a pilot clinical to test the effect of anakinra on cardiopulmonary exercise performance in patients with HF and evidence of elevated inflammatory signaling (n = 7). The median peak oxygen consumption (VO(2)) improved from 12.3 [10.0, 15.2] to 15.1 [13.7, 19.3] mL · kg(-1) · min(-1) (P = 0.016 vs. baseline) and median ventilator efficiency (V(E)/VCO(2) slope) improved from 28.1 [22.8, 31.7] to 24.9 [22.9, 28.3] (P = 0.031 vs. baseline).
Conclusions:
These findings suggest that IL-1β activity contributes to poor exercise tolerance in patients with systolic HF and identifies IL-1β blockade as a novel strategy for pharmacologic intervention.
Trial Registration:
ClinicalTrials.gov NCT01300650.
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