Key result
NSE levels strongly predict poor 6-month neurological outcome after out-of-hospital cardiac arrest with ~0.86 AUC.
Why the study?
The relevance of recommended neuron-specific enolase cutoff values for prognostication after cardiac arrest is uncertain due to lack of standardized methodology and unclear influence of temperature management.
Does Neuron-specific enolase (NSE) predict neurological outcome in patients hospitalized after out-of-hospital cardiac arrest undergoing targeted temperature management?
RCT (n=686)
randomized
Does Neuron-specific enolase (NSE) predict neurological outcome in patients hospitalized after out-of-hospital cardiac arrest undergoing targeted temperature management?
High, serial NSE values are strong predictors of poor neurological outcome after out-of-hospital cardiac arrest, independent of targeted temperature management at 33°C or 36°C.
NSE may aid neurological prognostication after OHCA; leaves open routine adoption pending prospective multimodal validation.
BACKGROUND: Neuron-specific enolase (NSE) is a widely-used biomarker for prognostication of neurological outcome after cardiac arrest, but the relevance of recommended cutoff values has been questioned due to the lack of a standardized methodology and uncertainties over the influence of temperature management. OBJECTIVES: This study investigated the role of NSE as a prognostic marker of outcome after out-of-hospital cardiac arrest (OHCA) in a contemporary setting. METHODS: A total of 686 patients hospitalized after OHCA were randomized to targeted temperature management at either 33°C or 36°C. NSE levels were assessed in blood samples obtained 24, 48, and 72 h after return of spontaneous circulation. The primary outcome was neurological outcome at 6 months using the cerebral performance category score. RESULTS: NSE was a robust predictor of neurological outcome in a baseline variable-adjusted model, and target temperature did not significantly affect NSE values. Median NSE values were 18 ng/ml versus 35 ng/ml, 15 ng/ml versus 61 ng/ml, and 12 ng/ml versus 54 ng/ml for good versus poor outcome at 24, 48, and 72 h, respectively (p < 0.001). At 48 and 72 h, NSE predicted neurological outcome with areas under the receiver-operating curve of 0.85 and 0.86, respectively. High NSE cutoff values with false positive rates ≤5% and tight 95% confidence intervals were able to reliably predict outcome. CONCLUSIONS: High, serial NSE values are strong predictors of poor outcome after OHCA. Targeted temperature management at 33°C or 36°C does not significantly affect NSE levels. (Target Temperature Management After Cardiac Arrest [TTM]; NCT01020916).
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Stammet et al. (2015) conducted an RCT in out-of-hospital cardiac arrest (n=686). Targeted temperature management at 33°C vs. Targeted temperature management at 36°C was evaluated on neurological outcome at 6 months using the cerebral performance category score. Neuron-specific enolase (NSE) levels strongly predicted poor neurological outcome at 6 months after out-of-hospital cardiac arrest (AUC 0.85 at 48 h and 0.86 at 72 h).
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