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Prognostic Value of High-Sensitivity Troponin-T to Identify Patients at Risk of Left Ventricular Graft Dysfunction
A B Méndez1, J Ordonez-Llanos2, S Mirabet1
1Department of Cardiology, Hospital de Sant Pau, Barcelona, Spain.
Insights
High-sensitivity troponin T (HS-TNT) can help detect primary graft dysfunction with left ventricular involvement (PGD-LV) after heart transplantation (HTx). A HS-TNT level above 2000 ng/L is a strong predictor of PGD-LV risk.
Area of Science:
- Cardiology
- Transplantation Medicine
- Critical Care
Background:
- Primary graft dysfunction involving the left ventricle (PGD-LV) after heart transplantation (HTx) is a critical complication with high mortality.
- Early identification of PGD-LV is crucial for timely therapeutic intervention and improved patient outcomes.
Purpose of the Study:
- To evaluate the diagnostic value of post-transplant high-sensitivity troponin T (HS-TNT) levels in predicting PGD-LV in HTx recipients.
- To identify predictors of PGD-LV to facilitate early risk stratification.
Main Methods:
- A cohort of 71 heart transplant recipients was analyzed.
- HS-TNT levels were measured upon intensive care unit admission post-HTx.
- PGD-LV was defined by specific hemodynamic criteria, including low ejection fraction and hypotension.
Main Results:
- The area under the receiver-operator characteristic curve for HS-TNT in predicting PGD-LV was 0.860 (P < .003).
- A HS-TNT cutoff of >2000 ng/L demonstrated 75% sensitivity and 87% specificity for identifying patients at risk of PGD-LV.
- Multivariate analysis identified HS-TNT >2000 ng/L and prolonged coronary bypass time as independent predictors of PGD-LV.
Conclusions:
- Post-operative HS-TNT measurement is a valuable tool for the early detection of heart transplant patients at risk for PGD-LV.
- Elevated HS-TNT levels (>2000 ng/L) combined with extended coronary bypass times are powerful indicators of PGD-LV.
Abstract:
Primary graft dysfunction after heart transplantation (HTx) has a very high mortality rate, especially if the left ventricle (PGD-LV) is involved. Early diagnosis is important to select the appropriate therapy to improve prognosis. The value of high-sensitivity troponin T (HS-TNT) measurement obtained at patient arrival at the intensive care unit was analyzed in 71 HTx patients. Mild or moderate PGD-LV was defined by hemodynamic compromise with one of the following criteria: left ventricular ejection fraction <40%, hemodynamic compromise with right atrial pressure >15 mm Hg, pulmonary capillary wedge pressure >20 mm Hg, cardiac index <2.0 L/min/m2, hypotension (mean arterial pressure <70 mm Hg), and need for high-dose inotropes (inotrope score >10) or newly placed intra-aortic balloon pump. The mean recipient age was 54 ± 12 years (73% men), and donor age was 47 ± 11 years. Ischemic time was 200 ± 51 minutes, and coronary bypass time was 122 ± 31 minutes. Nine (13%) HTx patients were diagnosed with PGD-LV post-HTx, 8 with biventricular dysfunction. Four patients died, 2 with PGD-LV (22%) and 2 without PGD (4%). Mean HS-TNT before HTx was 158 ± 565 ng/L, and post-HT was 1621 ± 1269 ng/L. The area under the curve (receiver-operator characteristic) of HS-TNT to detect patients at risk of PGD-LV was 0.860 (P < .003). A cutoff value of HS-TNT >2000 ng/L had a sensitivity of 75% and specificity of 87% to identify patients at risk of PGD-LV. Multivariate analysis identified HS-TNT >2000 ng/L (P < .02) and coronary bypass-time (P < .01) as independent predictors of PGD-LV. HS-TNT >2000 ng/L at intensive care admission after HT and prolonged coronary bypass time were the most powerful predictors of PGD-LV. HS-TNT may be helpful for early detection of HTx patients at risk of PGD-LV.
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