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Published on: August 16, 2016
Inotropes in the management of acute heart failure
John W Petersen1, G Michael Felker
1Division of Cardiovascular Medicine, Duke University Medical Center, Durham, NC, USA.
Insights
Positive inotropes improve cardiac output but increase risks like arrhythmias and mortality in heart failure patients. Routine use is not recommended, though they may aid acute decompensation or bridge to transplant.
Area of Science:
- Cardiology
- Pharmacology
Background:
- Impaired cardiac contractility drives heart failure progression through vasoconstriction, inflammation, and adverse remodeling.
- Positive inotropes, designed to boost contractility, have been explored for heart failure treatment.
Purpose of the Study:
- To evaluate the efficacy and safety of positive inotropic agents in managing heart failure.
- To determine the current indications and limitations of inotropic therapy in acute and chronic heart failure.
Main Methods:
- Review of clinical data and existing literature on positive inotropic agents in heart failure.
- Analysis of the mechanisms of action for current inotropes like dobutamine and milrinone.
Main Results:
- Positive inotropes improve cardiac output but are linked to increased myocardial oxygen demand, arrhythmias, and mortality.
- Current evidence does not support routine use in acute or chronic heart failure settings.
Conclusions:
- Routine inotropic therapy is contraindicated in heart failure due to adverse effects.
- Inotropes may be considered in select acute heart failure cases with hypoperfusion or shock, or as a bridge to advanced therapies.
- Further research into novel inotropes with improved safety profiles is warranted.
Abstract:
Impaired cardiac contractility is a fundamental component of the heart failure syndrome, initiating the cycle of vasoconstriction, neurohormonal and inflammatory activation, and adverse ventricular remodeling that leads to heart failure progression. Based on this core paradigm, drugs that increase cardiac contractility (positive inotropes) are theoretically appealing as a heart failure therapy, and such agents have been extensively investigated in both acute and chronic heart failure. Although these agents clearly improve cardiac output, their use in heart failure has consistently been associated with increased myocardial oxygen demand, cardiac arrhythmias, and mortality in a variety of clinical settings. Based on these data, the routine use of inotropes as heart failure therapy is not indicated in either the acute or chronic setting. Inotropes may be a necessary evil in a subset of acute heart failure patients, such as those with acute heart failure decompensation in the setting of clinically evident hypoperfusion or shock, or as a bridge to more definitive treatment, such as revascularization or cardiac transplantation. Currently available inotropes, such as dobutamine and milrinone, act (directly or indirectly) by increasing cyclic adenylate monophosphate and therefore intracellular calcium flux. Whether newer inotropes with differing mechanisms of action will realize the potential clinical benefits of inotropic therapy without the risk remains a subject of ongoing investigation.
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