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Published on: July 20, 2022
Biomarkers for Risk Assessment in Atrial Fibrillation
David D Berg1, Christian T Ruff1, David A Morrow1
1TIMI Study Group, Cardiovascular Division, Department of Medicine, Brigham and Women's Hospital, Harvard Medical School, Boston, MA, USA.
Insights
Circulating biomarkers can predict atrial fibrillation (AF) risk and complications like stroke and bleeding. Biomarker-based scores like ABC-stroke and ABC-bleeding offer improved risk stratification over traditional methods.
Area of Science:
- Cardiology
- Biomarker Discovery
- Risk Stratification
Background:
- Atrial fibrillation (AF) increases thromboembolism risk, necessitating effective anticoagulant therapy.
- Clinical management focuses on identifying high-risk patients for AF, stroke, systemic embolic events (S/SEE), and bleeding.
Purpose of the Study:
- To review evidence on circulating biomarkers for predicting AF incidence and complications.
- To discuss emerging biomarker-based scores for risk assessment.
Main Methods:
- Review of current literature on circulating biomarkers in AF.
- Analysis of biomarker associations with AF development, S/SEE, and bleeding.
- Evaluation of novel biomarker-based risk scores.
Main Results:
- Biomarkers of hemodynamic stress, inflammation, and fibrosis predict AF development.
- Biomarkers of hemodynamic stress, myocardial injury (cardiac troponin), and coagulation (D-dimer) predict S/SEE.
- Cardiac troponin and growth-differentiation factor-15 indicate bleeding risk.
- ABC-stroke and ABC-bleeding scores enhance risk stratification compared to CHA2DS2-VASc and HAS-BLED.
Conclusions:
- Circulating biomarkers are valuable tools for predicting AF and its complications.
- Biomarker-based scores offer superior risk stratification for stroke and bleeding in AF patients.
Background:
Atrial fibrillation (AF) is associated with an increased risk of thromboembolism, which can be significantly reduced with anticoagulant treatment. Key goals in the clinical management of AF are the identification of patients at high risk for developing AF and accurate stratification of the risk of stroke and systemic embolic events (S/SEE) as well as treatment-related major bleeding.
Content:
In this review, we describe the expanding evidence regarding the use of circulating biomarkers for predicting the risks of both incident AF and its clinically important complications of S/SEE and treatment-related major bleeding. We also review emerging biomarker-based scores for assessing these risks.
Summary:
Patients with AF undergo progressive cardiac structural remodeling, which may precede the onset of the arrhythmia. Abnormal concentrations of circulating biomarkers reflecting the underlying pathophysiologic mechanisms of hemodynamic stress (i.e., natriuretic peptides), inflammation (i.e., C-reactive protein), and myocardial fibrosis identify patients at higher risk of developing AF. Circulating biomarkers can also be used to identify patients with AF who are at greatest risk for developing S/SEE or major bleeding. In particular, biomarkers of hemodynamic stress, myocardial injury (i.e., cardiac troponin), and coagulation activity (i.e., D-dimer) are key indicators of thromboembolic risk, and cardiac troponin and growth-differentiation factor-15 are strongly associated with risk of anticoagulant-related major bleeding. The biomarker-based age, biomarker, clinical history (ABC)-stroke and ABC-bleeding risk scores improve risk stratification for S/SEE and major bleeding, respectively, when compared with traditional clinical risk scores like the CHA2DS2-VASc and HAS-BLED scores.
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