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Cardiac troponin and COVID-19 severity: Results from BIOCOVID study
Luis García de Guadiana-Romualdo1, Daniel Morell-García2, Olaia Rodríguez-Fraga3
1Laboratory Medicine Department, Hospital Universitario Santa Lucía, Cartagena, Spain.
Insights
Myocardial injury, indicated by elevated cardiac troponin, is common in COVID-19 patients and predicts mortality. Early troponin measurement aids in risk stratification for better COVID-19 patient management.
Area of Science:
- Cardiology
- Infectious Diseases
- Biomarkers
Background:
- Myocardial injury is frequently observed in COVID-19 patients, correlating with disease severity.
- Elevated cardiac troponin levels are a key indicator of myocardial injury.
Purpose of the Study:
- To analyze the prevalence and prognostic significance of myocardial injury in a large COVID-19 patient cohort.
- To evaluate the distinct roles of troponin T and troponin I in predicting outcomes.
Main Methods:
- A multicenter, retrospective observational study involving 1280 hospitalized COVID-19 patients across 32 Spanish hospitals.
- Myocardial injury defined by elevated troponin levels above sex-specific 99th percentile upper reference limits.
- Thirty-day mortality was the primary endpoint.
Main Results:
- Elevated troponin levels were detected in 26.9% (non-specific cut-off) to 30.0% (sex-specific cut-off) of patients.
- Prevalence was higher when troponin T was measured (42.9%) compared to troponin I (21.9%).
- Elevated troponin independently predicted 30-day mortality (ORs ranging from 3.00 to 3.69).
Conclusions:
- Myocardial injury is a common finding in COVID-19, with higher prevalence using sex-specific cut-offs and troponin T.
- Elevated troponin is a significant independent predictor of 30-day mortality in COVID-19 patients.
- Early cardiac troponin measurement is valuable for risk stratification in COVID-19 management.
Background:
Myocardial injury is a common finding in COVID-19 strongly associated with severity. We analysed the prevalence and prognostic utility of myocardial injury, characterized by elevated cardiac troponin, in a large population of COVID-19 patients, and further evaluated separately the role of troponin T and I.
Methods:
This is a multicentre, retrospective observational study enrolling patients with laboratory-confirmed COVID-19 who were hospitalized in 32 Spanish hospitals. Elevated troponin levels were defined as values above the sex-specific 99th percentile upper reference limit, as recommended by international guidelines. Thirty-day mortality was defined as endpoint.
Results:
A total of 1280 COVID-19 patients were included in this study, of whom 187 (14.6%) died during the hospitalization. Using a nonspecific sex cut-off, elevated troponin levels were found in 344 patients (26.9%), increasing to 384 (30.0%) when a sex-specific cut-off was used. This prevalence was significantly higher (42.9% vs 21.9%; P < .001) in patients in whom troponin T was measured in comparison with troponin I. Sex-specific elevated troponin levels were significantly associated with 30-day mortality, with adjusted odds ratios (ORs) of 3.00 for total population, 3.20 for cardiac troponin T and 3.69 for cardiac troponin I.
Conclusion:
In this multicentre study, myocardial injury was a common finding in COVID-19 patients. Its prevalence increased when a sex-specific cut-off and cardiac troponin T were used. Elevated troponin was an independent predictor of 30-day mortality, irrespective of cardiac troponin assay and cut-offs to detect myocardial injury. Hence, the early measurement of cardiac troponin may be useful for risk stratification in COVID-19.
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