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Predictive Value of High-Sensitivity Troponin T for Systolic Dysfunction and Infarct Size (Six Months) After
Moman A Mohammad1, Sasha Koul1, J Gustav Smith1
1Department of Cardiology, Clinical Sciences, Lund University, Skane University Hospital, Lund, Sweden.
Insights
High-sensitivity cardiac Troponin T (hs-cTnT) accurately predicts systolic dysfunction six months after myocardial infarction. This biomarker offers a rapid, cost-effective tool for assessing long-term heart function post-STEMI.
Area of Science:
- Cardiology
- Biomarker Research
- Medical Imaging
Background:
- Myocardial injury markers correlate with infarct size (IS) and ejection fraction (EF).
- Limited data exist on newer high-sensitivity troponin assays compared to cardiac MRI.
- Assessing long-term outcomes requires reliable predictive tools.
Purpose of the Study:
- To evaluate associations of hs-cTnT, CKMB, and NT-proBNP with IS and EF at 6 months.
- To compare the predictive value of biomarkers and early imaging for long-term cardiac function.
- To determine if hs-cTnT can predict systolic dysfunction post-STEMI.
Main Methods:
- Analysis of 119 STEMI patients from a clinical trial.
- Biomarker measurements (hs-cTnT, CKMB, NT-proBNP) at multiple time points.
- Cardiac MRI at 4±2 days and 6 months for IS and EF assessment.
Main Results:
- Peak hs-cTnT showed the strongest correlation with IS (r=0.80) and EF (r=0.68) at 6 months.
- Early IS and EF measurements strongly correlated with 6-month outcomes (IS: r=0.84, EF: r=0.74).
- hs-cTnT peak levels predicted EF ≤40% at 6 months with an AUC of 0.87.
Conclusions:
- High-sensitivity Troponin T is a valuable tool for predicting long-term systolic dysfunction after STEMI.
- hs-cTnT offers a rapid, cost-effective, and accessible method for risk stratification.
- Early cardiac MRI findings also provide strong prognostic information.
Abstract:
The association of markers of myocardial injury and dysfunction with infarct size (IS) and ejection fraction (EF) are well documented. However, limited data are available on the newer high-sensitivity troponin assays and comparison with morphologic and functional assessment with cardiac magnetic resonance imaging. We aimed to examine the associations of high-sensitivity cardiac Troponin-T (hs-cTnT), creatine kinase MB iso-enzyme (CKMB), and N-terminal pro B-type Natriuretic Peptide (NT-proBNP) to IS and EF at 6 months. Blood samples from 119 ST-segment elevation myocardial infarction patients from the Rapid Endovascular Catheter Core Cooling Combined With Cold Saline solution as an Adjunct to Percutaneous Coronary Intervention for the Treatment of Acute Myocardial Infarction trial were collected at baseline, 6, 24, and 48 hours after admission. Cardiac magnetic resonance was performed at 4 ± 2 days and 6 months. The association of biomarker levels to IS and EF was tested with Pearson's correlation coefficients and linear regression models with bootstrap resampling. The correlation coefficient of biomarker to IS was (CKMB: r = 0.71); (NT-proBNP: r = 0.55); (hs-cTnT: r = 0.80); and for EF (CKMB: r = 0.57); (NT-proBNP: r = 0.48); and (peak hs-cTnT: r = 0.68). IS and EF at 4 ± 2 days had the strongest correlations with IS and EF at 6 months respectively (IS: r = 0.84) and (EF: r = 0.74). Receiver operating characteristic of peak hs-cTnT for predicting EF ≤40% at 6 months was 0.87 compared with 0.75 for early IS. Early EF was a negative predictor of late EF <40%, 1-area under curve = 0.93. In conclusion, high-sensitivity Troponin T is a rapid, cheap, generally available tool for accurate prediction of systolic dysfunction in patients 6 months after first-time ST-segment elevation myocardial infarction.
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