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Published on: July 25, 2019
Beyond Natriuretic Peptides for Diagnosis and Management of Heart Failure
Nasrien E Ibrahim1, James L Januzzi2,3
1Cardiology Division, Massachusetts General Hospital, Boston, MA.
Insights
Novel biomarkers offer improved heart failure (HF) diagnosis beyond natriuretic peptides (NPs), addressing NP limitations. Future management may involve multibiomarker panels for personalized HF care.
Area of Science:
- Cardiology
- Biomarker Discovery
- Translational Medicine
Background:
- Heart failure (HF) presents significant global health and economic challenges.
- Natriuretic peptides (NPs) aid HF management but have limitations (obesity, AFib, renal dysfunction).
- Novel biomarkers are needed to enhance understanding and personalize HF care.
Purpose of the Study:
- To review novel biomarkers for heart failure (HF).
- To categorize biomarkers by pathophysiologic pathways.
- To discuss the potential of novel biomarkers in complementing NPs for improved HF patient management.
Main Methods:
- Literature review of novel biomarkers in heart failure.
- Categorization of biomarkers based on pathophysiologic mechanisms.
- Analysis of biomarker limitations and clinical utility.
Main Results:
- Novel biomarkers target key HF pathways: myocardial stretch, ECM remodeling, cardiomyocyte injury, oxidative stress, inflammation, neurohumoral activation, and renal dysfunction.
- Several novel biomarkers show promise in preliminary studies.
- Biomarkers provide orthogonal information to traditional NPs.
Conclusions:
- Novel biomarkers are crucial for overcoming NP limitations in complex HF cases.
- Further validation is required before widespread clinical adoption of novel biomarkers.
- Multibiomarker panels are anticipated to personalize HF management and improve patient outcomes.
Background:
Heart failure (HF) is a complex syndrome with an enormous societal burden in terms of cost and morbidity and mortality. Natriuretic peptide (NP) testing is now widely used to support diagnosis, prognostication, and management of patients with HF, but NPs come with limitations, including vulnerability to the presence of obesity, atrial fibrillation, and renal dysfunction, for example. Beyond the NPs, novel biomarkers may supplement traditional clinical and laboratory testing to improve understanding of the complex disease process of HF, and possibly to personalize care for those affected through better individual phenotyping.
Content:
In this review we discuss novel biomarkers by dividing them into categories based on major pathophysiologic pathways they represent including myocardial stretch/stress, cardiac extracellular matrix remodeling, cardiomyocyte injury/death, oxidative stress, inflammation, neurohumoral activation, and renal dysfunction.
Summary:
Given the limitations of NPs, along with the complex physiology in HF, it is logical to consider utilization of novel biomarkers providing orthogonal biological and clinical information. Several novel HF biomarkers have shown promise but have substantial expectations to meet before being used clinically. Nonetheless, it is reasonable to expect the future lies in the application of multibiomarker panels for the improvement in management of HF and the personalization of care.
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These markers indicate stress or strain on the heart muscle:
Natriuretic Peptides (BNP)
Cardiac myocytes produce these hormones in response to ventricular stretching...

