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Cardiovascular risk stratification with plasma B-type natriuretic peptide levels in a community-based hypertensive
Kenyu Sato1, Toshie Segawa1, Fumitaka Tanaka1
1Department of Internal Medicine, Iwate Medical University, Morioka, Japan.
Insights
Plasma B-type natriuretic peptide (BNP) testing effectively stratifies cardiovascular risk in hypertensive patients. Adding BNP to the Framingham risk score significantly improves prediction of cardiovascular events in this population.
Area of Science:
- Cardiology
- Biomarkers
- Hypertension Research
Background:
- Limited data exists on plasma B-type natriuretic peptide (BNP) utility for cardiovascular (CV) risk stratification in hypertensive individuals.
- Hypertension is a major risk factor for CV events, necessitating improved risk assessment tools.
Purpose of the Study:
- To evaluate the effectiveness of plasma BNP testing in stratifying CV risk among community-based hypertensive patients.
- To assess the added predictive value of BNP when combined with the Framingham risk score (FRS).
Main Methods:
- A cohort of 5,865 hypertensive patients was followed for a mean of 5.6 years.
- Cox regression analysis was used to estimate hazard ratios (HR) for CV events across BNP quartiles.
- Predictive abilities were assessed using receiver operating characteristic (ROC) analysis, net reclassification improvement (NRI), and integrated discrimination improvement (IDI).
Main Results:
- The highest BNP quartile demonstrated a significantly higher rate of CV events compared to lower quartiles (p <0.001).
- Adjusted HR for CV events increased significantly with higher BNP quartiles (p-trend <0.03), with the highest quartile showing HR 1.59 (95% CI 1.16-2.19).
- BNP showed predictive abilities comparable to FRS, and adding BNP to FRS significantly enhanced predictive metrics (all p <0.001).
Conclusions:
- Elevated plasma BNP levels serve as a valuable biomarker for CV risk stratification in unselected hypertensive subjects.
- Incorporating BNP testing into established risk scores significantly improves the prediction of CV events in hypertensive cohorts.
Abstract:
Few reports have examined the utility of plasma B-type natriuretic peptide (BNP) testing for cardiovascular (CV) risk stratification in real-world hypertensive subjects. Subjects of the study were community-based hypertensive patients (n = 5,865). The CV event rate within each BNP quartile was estimated, and a Cox regression model was used to determine the relative hazard ratio (HR) among the quartiles. Furthermore, to determine the usefulness of BNP as a biomarker in combination with the Framingham risk score (FRS), the predictive abilities in terms of area under the curve of receiver operating characteristic analysis, net reclassification improvement, and integrated discrimination improvement indices were determined. The mean follow-up duration was 5.6 years. The highest quartile showed a significantly higher rate of CV events compared with the lower quartiles (p <0.001). After adjustment for established CV risk factors, the HR for CV events increased significantly according to the quartile (p value for trend <0.03), and the HR for the highest quartile was significantly elevated compared with the lowest quartile (HR 1.59, 95% confidence interval 1.16 to 2.19). The predictive abilities of BNP in terms of sensitivity and specificity for CV events were comparable with those of FRS. When BNP was added to an FRS-only model, the predictive abilities in terms of area under receiver operating characteristic curve, net reclassification improvement, and integrated discrimination improvement were significantly increased (all; p <0.001). Elevated BNP levels are thus a useful biomarker for CV risk stratification in unselected real-world hypertensive subjects. Adding BNP to an established CV risk score improves the predictive ability in this cohort.
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