Intravenous Infusion of the β3-Adrenergic Receptor Antagonist APD418 Improves Left Ventricular Systolic Function in
Hani N Sabbah1, Kefei Zhang1, Ramesh C Gupta1
1Department of Medicine, Division of Cardiovascular Medicine, Henry Ford Hospital, Detroit, Michigan.
Insights
Beta-3 adrenergic receptor (AR) antagonist APD418 improved cardiac function in dogs with heart failure. This suggests APD418 may be a potential treatment for acute heart failure exacerbations.
Area of Science:
- Cardiology
- Pharmacology
Background:
- Beta-3 adrenergic receptors (ARs) are upregulated in failing myocardium and can worsen heart failure (HF).
- Beta-3 AR stimulation inhibits cardiac contractility and relaxation, unlike beta-1 and beta-2 ARs.
Purpose of the Study:
- To investigate the effects of APD418, a beta-3 AR antagonist, on cardiovascular function and safety in dogs with systolic heart failure (HF).
Main Methods:
- Three studies were conducted in 21 dogs with induced HF (left ventricular ejection fraction [LVEF] ~35%).
- Dose escalation studies identified an effective APD418 dose.
- A 6-hour constant intravenous infusion of APD418 (4.224 mg/kg) was administered in the efficacy study, measuring hemodynamic endpoints.
Main Results:
- APD418 demonstrated a dose-dependent increase in LVEF and early filling index (Ei/Ai), indicating improved systolic and diastolic function.
- In the efficacy study, APD418 increased LVEF from 31% to 38% (P < .05) and Ei/Ai from 3.4 to 4.9 (P < .05).
- APD418 had no significant impact on heart rate or systemic blood pressure.
Conclusions:
- Intravenous APD418 administration resulted in significant positive inotropic and lusitropic effects in dogs with systolic HF.
- These findings support the potential development of APD418 for in-hospital treatment of acute decompensated heart failure.
Background:
Unlike β1- and β2-adrenergic receptors (ARs), β3-AR stimulation inhibits cardiac contractility and relaxation. In the failing left ventricular (LV) myocardium, β3-ARs are upregulated, and can be maladaptive in the setting of decompensation by contributing to LV dysfunction. This study examined the effects of intravenous infusions of the β3-AR antagonist APD418 on cardiovascular function and safety in dogs with systolic heart failure (HF).
Methods And Results:
Three separate studies were performed in 21 dogs with coronary microembolization-induced HF (LV ejection fraction [LVEF] of approximately 35%). Studies 1 and 2 (n = 7 dogs each) were APD418 dose escalation studies (dosing range, 0.35-15.00 mg/kg/h) designed to identify an effective dose of APD418 to be used in study 3. Study 3, the sustained efficacy study, (n = 7 dogs) was a 6-hour constant intravenous infusion of APD418 at a dose of 4.224 mg/kg (0.70 mg/kg/h) measuring key hemodynamic endpoints (e.g., EF, cardiac output, the time velocity integral of the mitral inflow velocity waveform representing early filling to time-velocity integral representing left atrial contraction [Ei/Ai]). Studies 1 and 2 showed a dose-dependent increase of LVEF and Ei/Ai, the latter being an index of LV diastolic function. In study 3, infusion of APD418 over 6 hours increased LVEF from 31 ± 1% to 38 ± 1% (P < .05) and increased Ei/Ai from 3.4 ± 0.4 to 4.9 ± 0.5 (P < .05). Vehicle had no effect on the LVEF or Ei/Ai. In study 3, APD418 had no significant effects on the HR or the systemic blood pressure.
Conclusions:
Intravenous infusions of APD418 in dogs with systolic HF elicit significant positive inotropic and lusitropic effects. These findings support the development of APD418 for the in-hospital treatment of patients with an acute exacerbation of chronic HF.
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