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Screening for Heart Failure: Biomarkers to Detect Heightened Risk in the General Population
Leah B Kosyakovsky1, Rudolf A de Boer2, Jennifer E Ho3
1Division of Cardiology, E/CLS 945, Beth Israel Deaconess Medical Center, 330 Brookline Avenue, Boston, MA, 02215-5491, USA.
Insights
Identifying individuals at risk for heart failure (HF) is crucial. Emerging biomarkers beyond natriuretic peptides and troponins offer new insights into HF development and risk prediction.
Area of Science:
- Cardiology
- Biomarker Discovery
- Genomics
Background:
- Heart failure (HF) poses a significant global health challenge.
- Early identification of individuals at risk for HF is critical due to available disease-modifying therapies.
- Obesity and diabetes are major risk factors for HF development.
Purpose of the Study:
- To review key circulating biomarkers associated with future HF development.
- To explore the role of these biomarkers in HF risk prediction.
- To discuss the integration of multi-omic data for enhanced HF risk assessment.
Main Methods:
- Literature review of circulating biomarkers for HF risk.
- Analysis of emerging protein, metabolic, transcriptomic, and genomic markers.
- Discussion of current guidelines and future research directions.
Main Results:
- Current guidelines utilize natriuretic peptides and cardiac troponins for HF risk stratification.
- A wide range of novel biomarkers (protein, metabolic, transcriptomic, genomic) are emerging for predicting future HF.
- These biomarkers provide insights into HF pathophysiology, including inflammation and cardiac fibrosis.
Conclusions:
- Emerging biomarkers can refine HF risk assessment beyond established markers.
- Integrated clinical and multi-omic models are promising for capturing HF risk.
- Future research should address sex differences, comorbidity burden, and HF subtypes for personalized risk assessment and prevention.
Purpose Of Review:
Heart failure (HF) represents a growing global burden of morbidity and mortality. Identifying individuals at risk for HF development is increasingly important, particularly given the advent of disease-modifying therapies for HF as well as its major risk factors such as obesity actalnd diabetes. We aim to review the key circulating biomarkers associated with future HF which may contribute to HF risk prediction.
Recent Findings:
While current guidelines recommend the use of natriuretic peptides and cardiac troponins in HF risk stratification, there are a diverse array of other emerging protein, metabolic, transcriptomic, and genomic biomarkers of future HF development. These biomarkers not only lend insight into the underlying pathophysiology of HF, which spans inflammation to cardiac fibrosis, but also offer an opportunity to further refine HF risk in addition to established biomarkers. As evolving techniques in molecular biology enable an increased understanding of the complex biologic contributions to HF pathophysiology, there is an important opportunity to construct integrated clinical and multi-omic models to best capture HF risk. Moving forward, future studies should seek to understand the contributions of sex differences, underlying comorbidity burden, and HF subtypes to an individual's HF risk. Further studies are necessary to fully define the clinical utility of biomarker screening approaches to refine HF risk assessment, as well as to link risk assessment directly to preventive strategies for HF.
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