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Prognostication in Different Heart Failure Phenotypes: The Role of Circulating Biomarkers
1State Medical University, Zaporozhye, Ukraine.
Insights
This review explores cardiac biomarkers for heart failure (HF) prognostication. While biomarkers like sST2, Galectin-3, CT-1, and GDF-15 show promise for early detection, more research is needed for specific HF phenotypes.
Area of Science:
- Cardiology
- Biomarker Research
Background:
- Heart failure (HF) is a growing global health concern with high cardiovascular morbidity and mortality.
- Current understanding of biomarker models for early prediction of HF with preserved ejection fraction (HFpEF) and HF with reduced ejection fraction (HFrEF) is limited.
Purpose of the Study:
- To review the utility of cardiac biomarkers in prognostication and reclassifying HF patients.
- To explore the potential of novel biomarkers in predicting early-stage HFpEF and HFrEF.
Main Methods:
- Literature review of existing studies on cardiac biomarkers in HF.
- Analysis of biomarker roles in collagen turnover, cardiac fibrosis, and inflammation.
Main Results:
- Several biomarkers, including sST2, Galectin-3, CT-1, and GDF-15, show potential for early HF detection.
- These biomarkers reflect changes in collagen turnover, fibrosis, and inflammation, suggesting diagnostic and predictive value.
- However, elevated levels are not specific to HFpEF or HFrEF phenotypes.
Conclusions:
- Biomarkers like sST2, Galectin-3, CT-1, and GDF-15 may aid in early HF detection and prognostication.
- Further research is essential to validate novel biomarkers for predicting HF development and differentiating between HFpEF and HFrEF stages.
Abstract:
Heart failure (HF) is multifactorial syndrome with high cardiovascular (CV) morbidity and mortality rates associated with an increasing prevalence worldwide. Measuring plasma levels of circulating biomarkers, i.e., natriuretic peptides, cardiac-specific troponins, metabolomic intermediates, Galectin-3, ST2, cardiotrophin-1, soluble endoglin and growth differentiation factor 15, may assist in the prognostication of HF development. However, the role of biomarker models in the prediction of an early stage of HF with a preserved ejection fraction (HFpEF) and HF with a reduced ejection fraction (HFrEF) is not still understood. This review explores the knowledge regarding the utility of cardiac biomarkers, aiming to reclassify patients with different phenotypes of HF. The review reports that several biomarkers reflected on subsequently alter collagen turnover, cardiac fibrosis and inflammation, which might have diagnostic and predictive value in HFpEF and HFrEF. The best candidates for determining the early stage of HF development were sST2, Galectin-3, CT-1 and GDF-15. However, increased plasma concentrations of these biomarkers were not specific to a distinct disease group of HFpEF and HFrEF. Finally, more investigations are required to determine the role of novel biomarkers in the prediction of HF and the determination of the early stages of HFpEF and HFrEF development.
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