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Bioactive Signaling in Next-Generation Pharmacotherapies for Heart Failure: A Review
Kelsie E Oatmen1, Michael R Zile2,3, John C Burnett4
1Cardiovascular Translational Research Center, University of South Carolina School of Medicine, Columbia.
Insights
Sacubitril/valsartan, a neprilysin inhibitor combined with an angiotensin II receptor blocker, improves heart failure outcomes. This novel approach moves beyond traditional receptor antagonists for heart failure treatment.
Area of Science:
- Cardiovascular Medicine
- Pharmacology
- Translational Research
Background:
- Standard heart failure (HF) treatment, especially for HF with reduced ejection fraction (HFrEF), involves renin-angiotensin system (RAS) inhibition.
- Trials like PARADIGM-HF show sacubitril/valsartan (ARB and neprilysin inhibitor) offers better outcomes than ACE inhibition alone.
Purpose of the Study:
- To review signaling pathways potentiated by neprilysin inhibition (NEPi) in HFrEF.
- To explore additive/synergistic effects of ARB with NEPi.
- To identify novel therapeutic targets beyond RAS antagonism.
Main Methods:
- Literature review of NEPi mechanisms in cardiovascular processes.
- Analysis of signaling pathways affected by sacubitril/valsartan.
- Evaluation of potential synergistic effects with ARB.
Main Results:
- NEPi potentiates multiple bioactive signaling pathways relevant to HFrEF.
- Sacubitril/valsartan activates pathways offering cardiovascular benefits.
- Novel signaling molecules identified that synergistically improve HFrEF outcomes.
Conclusions:
- Activation of specific pathways by NEPi yields cardiovascular effects unattainable with RAS inhibition alone.
- Future HF pharmacotherapy may shift from receptor antagonists to pathway activators.
- New avenues for translational and clinical research in HF treatment are emerging.
Importance:
The standard pharmacotherapy for heart failure (HF), particularly HF with reduced ejection fraction (HFrEF), is primarily through the use of receptor antagonists, notably inhibition of the renin-angiotensin system by either angiotensin-converting enzyme inhibition or angiotensin II receptor blockade (ARB). However, the completed Prospective Comparison of ARNI With an ACE-Inhibitor to Determine Impact on Global Mortality and Morbidity in Heart Failure (PARADIGM-HF) trial identified that the use of a single molecule (sacubitril/valsartan), which is an ARB and the neutral endopeptidase inhibitor (NEPi) neprilysin, yielded improved clinical outcomes in HFrEF compared with angiotensin-converting enzyme inhibition alone.
Observations:
This review examined specific bioactive signaling pathways that would be potentiated by NEPi and how these would affect key cardiovascular processes relevant to HFrEF. It also addressed potential additive/synergistic effects of ARB. A number of biological signaling pathways that may be potentiated by sacubitril/valsartan were identified, including some novel candidate molecules, which will act in a synergistic manner to favorably alter the natural history of HFrEF.
Conclusions And Relevance:
This review identified that activation rather than inhibition of specific receptor pathways provided favorable cardiovascular effects that cannot be achieved by renin-angiotensin system inhibition alone. Thus, an entirely new avenue of translational and clinical research lies ahead in which HF pharmacotherapies will move beyond receptor antagonist strategies.
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