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Cardiac troponin I predicts myocardial dysfunction in aneurysmal subarachnoid hemorrhage
N Parekh1, B Venkatesh, D Cross
1Royal Brisbane Hospital, Herston, Australia.
Insights
Cardiac troponin I (cTnI) assays reveal higher myocardial injury incidence in aneurysmal subarachnoid hemorrhage (SAH) than CK-MB. Elevated cTnI accurately predicts myocardial dysfunction in SAH patients.
Area of Science:
- Cardiology
- Neurology
- Critical Care Medicine
Background:
- Myocardial injury is a known complication of aneurysmal subarachnoid hemorrhage (SAH).
- Elevated creatine kinase, MB fraction (CK-MB) has been used to detect cardiac injury in SAH.
- Limited data exist on the utility of cardiac troponin I (cTnI) in aneurysmal SAH.
Purpose of the Study:
- To investigate the incidence of myocardial injury in aneurysmal SAH using the sensitive cTnI assay.
- To correlate cTnI levels with other biomarkers (CK-MB, myoglobin, catecholamines).
- To assess the predictive value of cTnI for myocardial dysfunction in SAH.
Main Methods:
- Thirty-nine patients with aneurysmal SAH were monitored for seven days.
- Evaluations included clinical assessment, ECG, echocardiography, cTnI, CK-MB, myoglobin, and urinary catecholamine assays.
- SAH severity was graded clinically and radiologically.
Main Results:
- Eight patients had elevated cTnI, while five had elevated CK-MB.
- Higher SAH severity correlated with increased cTnI levels (p < 0.05).
- cTnI elevations predicted ECG abnormalities (p < 0.01) and myocardial dysfunction (p < 0.01) with 100% sensitivity and 91% specificity, outperforming CK-MB.
Conclusions:
- cTnI assays demonstrate a higher incidence of myocardial injury in aneurysmal SAH compared to CK-MB.
- Elevated cTnI is strongly associated with myocardial dysfunction in SAH.
- cTnI is a highly sensitive and specific biomarker for myocardial dysfunction in aneurysmal SAH.
Objectives:
We studied the incidence of myocardial injury in aneurysmal subarachnoid hemorrhage (SAH) using the more sensitive cardiac troponin I (cTnI) assay, correlated changes in cTnI with creatine kinase, MB fraction (CK-MB), myoglobin, and catecholamine metabolite assays, and examined the predictive value of changes in cTnI for myocardial dysfunction.
Background:
Myocardial injury in aneurysmal SAH as evidenced by elevated CK-MB fraction has been reported. Little published data exist on the value of cTnI measurements in aneurysmal SAH.
Methods:
Thirty-nine patients were studied for seven days. Clinical cardiovascular assessment, electrocardiographic (ECG), echocardiography, cTnI, CK, CK-MB and CK-MB index, myoglobin and 24-h urinary catecholamine assays were performed in all patients. The ECG abnormalities were defined by the presence of ST-T changes, prolonged QT intervals, and arrhythmias. An abnormal echocardiogram was defined by the presence of wall-motion abnormalities and a reduced ejection fraction. The severity of SAH was graded clinically and radiologically.
Results:
Eight patients demonstrated elevations in cTnI (upper limit of normal is 0.1 microg/liter with the immunoenzymatic assay and 0.4 microg/liter with the sandwich immunoassay), while five had abnormal CK-MB levels (upper limit of normal is 8 microg/liter). Patients with more severe grades of SAH were more likely to develop a cTnI leak (p < 0.05). Patients with cTnI elevations were more likely to demonstrate ECG abnormalities (p < 0.01) and manifest clinical myocardial dysfunction (p < 0.01) as evidenced by the presence of a gallop rhythm on auscultation and clinical or radiological evidence of pulmonary edema as compared to those with CK-MB elevations. The sensitivity and specificity of cTnI to predict myocardial dysfunction were 100% and 91%, respectively, whereas the corresponding figures for CK-MB were 60% and 94%, respectively. Elevations in myoglobin levels (upper limit of normal <70 microg/liter) and urinary catecholamine metabolites (urinary vanilmandelate/creatinine ratio upper limit of normal, 2.6) are a nonspecific finding.
Conclusions:
Measurements of cTnI reveal a higher incidence of myocardial injury than predicted by CK-MB in aneurysmal SAH, and elevations of cTnI are associated with a higher incidence of myocardial dysfunction. Thus, cTnI is a highly sensitive and specific indicator of myocardial dysfunction in aneurysmal SAH.
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