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Published on: November 10, 2017
Cost effectiveness of statins in coronary heart disease
Oscar H Franco1, Anna Peeters, Caspar W N Looman
1Department of Public Health, Erasmus MC, University Medical Centre Rotterdam, PO Box 1738, office Ee 2006, 3000 DR Rotterdam, Netherlands. o.francoduran@erasmusmc.nl
Insights
Statin therapy is cost-effective for high-risk individuals, but its economic value varies significantly at lower risk levels. Transparency in economic analyses is crucial for reliable cost-effectiveness data.
Area of Science:
- Cardiovascular Medicine
- Health Economics
- Pharmacoeconomics
Background:
- Statin therapy effectively reduces coronary heart disease (CHD) events.
- High treatment costs and a large eligible population necessitate priority setting.
- Economic analyses of statins yield conflicting cost-effectiveness ratios.
Purpose of the Study:
- To review cost-effectiveness analyses (CEAs) of statin therapy.
- To synthesize cost-effectiveness ratios stratified by CHD risk categories and age.
- To inform priority setting for statin prescription.
Main Methods:
- Systematic review of CEAs comparing statins with no treatment for cardiovascular/CHD prevention in men.
- Extraction and standardization of cost per year of life saved (YLS) estimates.
- Stratification of data by risk categories, age, and funding source.
Main Results:
- 216 cost-effectiveness ratios from 24 studies were analyzed.
- Cost-effectiveness ratios increase as CHD risk decreases.
- Significant heterogeneity in ratios observed, ranging from cost savings to $490,000 per YLS.
Conclusions:
- Statin therapy demonstrates cost-effectiveness primarily for high-risk populations.
- Inconsistencies and significant heterogeneity persist in lower-risk categories.
- Enhanced transparency and reproducibility in economic analyses are essential for reliable findings.
Introduction:
Statin therapy reduces the rate of coronary heart disease, but high costs in combination with a large population eligible for treatment ask for priority setting. Although trials agree on the size of the benefit, economic analyses of statins report contradictory results. This article reviewed cost effectiveness analyses of statins and sought to synthesise cost effectiveness ratios for categories of risk of coronary heart disease and age.
Methods:
The review searched for studies comparing statins with no treatment for the prevention of either cardiovascular or coronary heart disease in men and presenting cost per years of life saved as outcome. Estimates were extracted, standardised for calendar year and currency, and stratified by categories of risk, age, and funding source
Results:
24 studies were included (from 50 retrieved), yielding 216 cost effectiveness ratios. Estimated ratios increase with decreasing risk. After stratification by risk, heterogeneity of ratios is large varying from savings to $59 000 per life year saved in the highest risk category and from 6500 dollars to 490,000 dollars in the lowest category. The pooled estimates show values of 21571 dollars per life year saved for a 10 year coronary heart disease risk of 20% and 16862 dollars per life year saved for 10 year risk of 30%.
Conclusion:
Statin therapy is cost effective for high levels of risk, but inconsistencies exist at lower levels. Although the cost effectiveness of statins depends mainly on absolute risk, important heterogeneity remains after adjusting for absolute risk. Economic analyses need to increase their transparency to reduce their vulnerability to bias and increase their reproducibility.
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