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High-Sensitivity Troponin as a Biomarker in Heart Rhythm Disease
Cian P McCarthy1, Omair Yousuf2, Alvaro Alonso3
1Department of Medicine, Massachusetts General Hospital, Boston, Massachusetts.
Insights
High-sensitivity cardiac troponin (hs-cTn) assays show promise in guiding cardiac electrophysiology (EP) practice. These biomarkers may identify patients at risk for arrhythmias and sudden cardiac death, aiding treatment decisions.
Area of Science:
- Cardiology
- Electrophysiology
- Biomarker Research
Background:
- Biomarkers are crucial for prognosis in cardiovascular diseases like coronary artery disease and heart failure.
- Their role in cardiac electrophysiology (EP) is less defined but holds potential for risk stratification and therapeutic guidance.
Purpose of the Study:
- To review the prognostic significance of high-sensitivity cardiac troponin (hs-cTn) assays in cardiac arrhythmias.
- To explore the impact of hs-cTn on various arrhythmia disease states and identify future research directions.
Main Methods:
- Literature review focusing on studies investigating hs-cTn assays.
- Analysis of hs-cTn's role in different arrhythmia conditions and patient populations.
Main Results:
- hs-cTn assays detect subclinical cardiac myocyte damage, offering prognostic insights.
- Current evidence suggests hs-cTn utility in atrial fibrillation and as a screening marker for sudden cardiac death risk.
Conclusions:
- The application of hs-cTn assays in cardiac EP is still investigational.
- hs-cTn demonstrates potential as a prognostic biomarker for arrhythmias and sudden cardiac death risk stratification.
Abstract:
Biomarkers are important prognostic tools in various cardiovascular conditions, including coronary artery disease and heart failure. Although their utility in cardiac electrophysiology (EP) is less established, biomarkers may guide EP clinical practice by identifying patients at risk for developing arrhythmias and their complications, in addition to augmenting therapeutic decisions by targeting appropriate pharmacologic and interventional therapies to patients who may benefit most. In this review, we focus on the prognostic role of high-sensitivity cardiac troponin (hs-cTn) assays-which detect subclinical cardiac myocyte damage-in cardiac arrhythmias and their sequelae. We review the current literature on hs-cTn and its impact on various arrhythmia disease states and also provide suggestions for future research in this field. In conclusion, although the utility of hs-cTn assays remains at an investigational stage in cardiac EP, studies to date have suggested value as a prognostic biomarker in atrial fibrillation and as a screening marker for patients at high risk of sudden cardiac death (both in the general population and among those with hypertrophic cardiomyopathy).
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