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Experiences of a One-hour Algorithm in Chest Pain Patients With a Nonelevated Troponin T at Presentation
Insights
A 1-hour measurement of high-sensitivity cardiac troponin T (hs-cTnT) can help rule out myocardial infarction (MI) in emergency department patients. Dynamic hs-cTnT changes are rare but linked to higher admission and MI rates.
Area of Science:
- Cardiology
- Emergency Medicine
- Biomarker Research
Background:
- Chest pain is a common emergency department (ED) presentation.
- Early diagnosis of myocardial infarction (MI) is critical.
- High-sensitivity cardiac troponin T (hs-cTnT) is a key biomarker for MI detection.
Purpose of the Study:
- To evaluate the utility of a 1-hour hs-cTnT measurement in chest pain patients with a low baseline.
- To determine the prevalence of early dynamic hs-cTnT changes.
- To assess the association of these changes with admission rates, diagnoses, and outcomes.
Main Methods:
- Prospective study of 1091 chest pain patients in an ED.
- Baseline hs-cTnT ≤14 ng/L, with a second measurement within 30-90 minutes.
- 30-day follow-up for admission, readmission, MI, and death.
Main Results:
- Dynamic hs-cTnT changes (≥3 ng/L) occurred in 2.1% of patients.
- The dynamic group had significantly higher admission rates (65.2% vs 13.9%) and MI diagnoses (26.7% vs 0.7%).
- No deaths or MIs occurred within 30 days for patients discharged from the ED.
Conclusions:
- Dynamic 1-hour hs-cTnT changes are uncommon but indicate higher risk.
- A 1-hour hs-cTnT assay can aid in early MI rule-out when combined with clinical assessment.
- Lack of dynamic change strongly suggests MI is unlikely.
Background:
We aimed to evaluate the use of a 1-hour measurement of high-sensitivity cardiac troponin T (hs-cTnT) in an emergency department (ED) population of chest pain patients with a nonelevated baseline hs-cTnT and to examine the prevalence of early dynamic changes in hs-cTnT and the association with admission rate, diagnosis, and outcome.
Methods:
All patients with a chief complaint of chest pain presenting to the ED of Karolinska University Hospital, Solna, Sweden, from December 2014 to September 2015 who had a baseline hs-cTnT of ≤14 ng/L and a second value obtained within >30 to ≤90 minutes were followed for 30 days regarding admission, readmission, myocardial infarction (MI), and death.
Results:
A total of 1091 patients were included. Dynamic 1-hour changes in hs-cTnT defined as an increase or decrease of ≥3 ng/L occurred in 23 patients (2.1%). Fifteen patients (65.2%) in the dynamic group were admitted, compared with 148 patients (13.9%) in the nondynamic group (P < 0.001). Four of the admitted patients (26.7%) in the dynamic and 1 (0.7%) in the nondynamic group were diagnosed with an MI (P < 0.001). No death or MI occurred within 30 days among those discharged from the ED.
Conclusions:
Dynamic 1-hour changes in hs-cTnT were uncommon but associated with a higher rate of admission and of MI in an unselected population of chest pain patients with a nonelevated hs-cTnT at presentation. Lack of dynamic changes makes MI highly unlikely, and a 1-hour measurement may facilitate an early rule out of MI but should be used together with clinical assessment.
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