Key result
Plasma N-BNP levels were significantly higher in heart failure patients than controls (299 vs 7 fmol/ml, P<0.005) and independently predicted peak oxygen consumption.
Why the study?
Does plasma N-BNP correlate with functional reserve (peak VO2 and peak CPO) better than LVEF in patients with heart failure?
Observational (n=96)
Does plasma N-BNP correlate with functional reserve (peak VO2 and peak CPO) better than LVEF in patients with heart failure?
Effect estimate: R>=0.5
Absolute Event Rate: 299% vs 7%
p-value: p=<0.005
Plasma N-BNP is an independent predictor of peak VO2 and correlates better with cardiac pump dysfunction than LVEF, supporting its use in estimating functional reserve in heart failure.
N-BNP may aid estimation of functional reserve in HF; leaves open prospective validation versus LVEF.
AIMS: Whether plasma N-terminal brain natriuretic peptide (N-BNP) is useful in the diagnosis of heart failure (HF) depends traditionally on whether it is as good as the putative 'gold-standard', left ventricular ejection fraction (LVEF), in indicating cardiac dysfunction. However, since HF is primarily an impairment of function of the cardiac pump, we explored the relationship between N-BNP and direct and indirect indicators of cardiac pump dysfunction. METHODS AND RESULTS: Eighty-six HF patients (mean age 56 years) with a range of LVEF's (mean 36.9+/-15.2%, range 15-66%) and 10 age-matched healthy controls were recruited into the study and had resting N-BNP measured. Cardiopulmonary exercise testing was performed to assess peak oxygen consumption (Vo(2)). A subgroup of 23 subjects underwent further exercise haemodynamic assessment to evaluate peak cardiac power output (CPO). The CHF group had significantly higher N-BNP (median [interquartile range]) levels (299 [705] fmol/ml) than the control group (7 [51] fmol/ml, P<0.005). Significant correlations between N-BNP and peak Vo(2), and N-BNP and peak CPO were observed (R> or =0.5, P<0.005). Although significant correlation was observed between N-BNP and LVEF (R=0.34, P=0.01), the correlations between LVEF and peak Vo(2) or peak CPO (all R<0.3, P>0.3) were not significant. Multivariate analysis identified plasma N-BNP and NYHA class, but not LVEF, as independent predictors of peak Vo(2). CONCLUSIONS: We have found that N-BNP was surprisingly good as a simple indicator of cardiac pump dysfunction. Since heart failure is an inadequacy of function, these results strongly support the notion that N-BNP is a useful blood test in estimating the extent of cardiac pump dysfunction and helpful in establishing positive diagnosis of heart failure.
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Williams et al. (2004) conducted an observational in Heart failure (n=96). Plasma N-BNP measurement vs. Healthy controls and LVEF was evaluated on N-BNP levels and correlation with peak Vo2 and peak CPO (R>=0.5, p=<0.005). Plasma N-BNP levels were significantly higher in heart failure patients than controls (299 vs 7 fmol/ml, P<0.005) and independently predicted peak oxygen consumption.
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