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C-reactive protein and reclassification of cardiovascular risk in the Framingham Heart Study
Peter W F Wilson1, Michael Pencina, Paul Jacques
1EPICORE, Emory University School of Medicine, and the Atlanta VAMC Epidemiology and Genetics Section, Atlanta, GA 30306, USA. peter.wf.wilson@emory.edu
Insights
High-sensitivity C-reactive protein (CRP) effectively estimates cardiovascular disease (CVD) risk, especially for intermediate-risk individuals. Adding CRP to traditional risk factors moderately improves prediction of coronary heart disease and total CVD events.
Area of Science:
- Cardiology
- Biomarkers
- Risk Prediction
Background:
- The prognostic value of high-sensitivity C-reactive protein (CRP) for cardiovascular disease (CVD) risk, particularly at intermediate risk levels, requires further assessment.
- Existing research has not fully evaluated the relationship between circulating CRP levels and CVD risk.
- Understanding CRP's role is crucial for refining CVD risk stratification.
Purpose of the Study:
- To assess the relationship between circulating high-sensitivity C-reactive protein (CRP) levels and cardiovascular disease (CVD) risk.
- To evaluate the effectiveness of CRP in predicting hard coronary heart disease (CHD) and total CVD events.
- To determine if CRP improves risk reclassification beyond traditional risk factors.
Main Methods:
- Analysis of 3006 Framingham Heart Study participants initially free of CVD.
- Utilized Cox regression, receiver operating characteristic (ROC) curve analysis, and net reclassification improvement (NRI).
- Multivariable models included traditional CVD risk factors and homocysteine levels.
Main Results:
- Higher CRP levels were significantly associated with increased risk for hard CHD and total CVD in age-adjusted models.
- In multivariable analyses, log CRP remained significantly related to hard CHD and total CVD.
- Adding CRP to traditional factors resulted in a 5.6% NRI for total CVD (P=0.014) and 11.8% for hard CHD (P=0.009).
Conclusions:
- Circulating CRP levels aid in estimating the risk of initial cardiovascular events.
- CRP is most effective in individuals at intermediate risk for vascular events.
- Incorporating CRP offers moderate improvements in cardiovascular risk reclassification.
Background:
The relationship of circulating levels of high-sensitivity C-reactive protein (CRP) with cardiovascular disease (CVD) risk, particularly with consideration of effects at intermediate levels of risk, has not been fully assessed.
Methods And Results:
Among 3006 offspring participants in the Framingham Heart Study free of CVD (mean age, 46 years at baseline), there were 129 hard coronary heart disease (CHD) events and 286 total CVD events during 12 years of follow-up. Cox regression, discrimination with area under the receiver operating characteristic curve, and net reclassification improvement were used to assess the role of CRP on vascular risk. In an age-adjusted model that included both sexes, the hazard ratios for new hard CHD and total CVD were significantly associated with higher CRP levels. Similar analyses according to increasing homocysteine level showed significant protective associations for hard CHD but not for total CVD. In multivariable analyses that included age, sex, systolic blood pressure, total cholesterol, high-density lipoprotein cholesterol, diabetes mellitus, current smoking, hypertension treatment, and homocysteine, the log CRP level remained significantly related to development of hard CHD and total CVD and provided moderate improvement in the discrimination of events. The net reclassification improvement when CRP was added to traditional factors was 5.6% for total CVD (P=0.014) and 11.8% for hard CHD (P=0.009).
Conclusions:
Circulating levels of CRP help to estimate risk for initial cardiovascular events and may be used most effectively in persons at intermediate risk for vascular events, offering moderate improvement in reclassification of risk.
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