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C-reactive protein, insulin resistance and risk of cardiovascular disease: a population-based study
Jørgen Jeppesen1, Tine W Hansen, Michael H Olsen
1Department of Medicine M, Glostrup University Hospital, Ndr. Ringvej, DK-2600 Glostrup, Denmark. jj@heart.dk
Insights
C-reactive protein (CRP) and insulin resistance (IR) are both linked to cardiovascular disease (CVD) risk. This study found CRP predicts CVD independently of IR in a general population, highlighting its importance in cardiovascular health.
Area of Science:
- Cardiology
- Metabolic Disorders
- Inflammation Research
Background:
- C-reactive protein (CRP) and insulin resistance (IR) are established cardiovascular disease (CVD) risk factors.
- The independent predictive value of CRP for CVD, beyond IR, remains unclear.
Purpose of the Study:
- To investigate whether C-reactive protein (CRP) predicts cardiovascular disease (CVD) risk independently of insulin resistance (IR).
Main Methods:
- A prospective, population-based study of 2,357 Danish adults (aged 41-72) without baseline CVD.
- CRP measured via high-sensitivity assay; IR assessed using HOMA-IR.
- Cox proportional-hazard models adjusted for traditional and novel CVD risk factors.
Main Results:
- Over 9.4 years, 222 cardiovascular events occurred.
- Elevated CRP levels significantly predicted CVD events (HR 1.33; P<0.001) after adjusting for HOMA-IR and other factors.
- Elevated HOMA-IR also predicted CVD events (HR 1.11; P<0.05).
Conclusions:
- Both C-reactive protein (CRP) and insulin resistance (IR) are significant predictors of cardiovascular disease (CVD) risk.
- CRP demonstrates independent predictive value for CVD risk in a general population.
Background:
C-reactive protein (CRP), a marker of inflammation, and insulin resistance (IR), a metabolic disorder, are closely related. CRP and IR have both been identified as significant risk factors of cardiovascular disease (CVD) after adjustment for conventional CVD risk factors. It is not clear whether CRP predicts CVD independent of IR.
Design:
Prospective population-based study.
Methods:
Two thousand three hundred and fifty-seven Danish men and women, recruited from the general population, aged 41-72 years, without major CVD at baseline were studied. Traditional and new risk factors were recorded at baseline. CRP was determined by a high-sensitivity assay, and IR was determined by the homoeostasis model assessment (HOMA-IR) method.
Results:
Over a median follow-up of 9.4 years, the incidence of the prespecified CV event, defined as the composite event of CV death, nonfatal ischaemic heart disease and nonfatal stroke, amounted to 222 cases. In Cox proportional-hazard models, adjusted for age, sex, smoking habit, total cholesterol, waist circumference, levels of triglycerides and high-density lipoprotein-cholesterol, systolic and diastolic blood pressures, physical activity and HOMA-IR, the hazard ratio (95% confidence interval) of a CV event was 1.33 (1.14-1.55; P<0.001) per standard deviation increase in log-transformed CRP level. In the same model, the hazard ratio of a CV event was 1.11 (1.02-1.21; P<0.05) per standard deviation increase in HOMA-IR level.
Conclusion:
In a general Danish population free of major CVD at baseline, both CRP and IR were significantly related to risk of CVD.
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