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Aspirin dose for the prevention of cardiovascular disease: a systematic review
Charles L Campbell1, Susan Smyth, Gilles Montalescot
1Gill Heart Institute, University of Kentucky, Lexington, USA. clcampbell@uky.edu
Insights
For long-term cardiovascular disease prevention, low-dose aspirin (75-81 mg/d) is effective and safer than higher doses. Higher aspirin dosages do not improve efficacy but increase gastrointestinal bleeding risks.
Area of Science:
- Cardiology
- Pharmacology
- Preventive Medicine
Background:
- Over 50 million US adults use aspirin for cardiovascular disease (CVD) prevention.
- Commonly prescribed aspirin doses are 81 mg/d and 325 mg/d.
- Optimal long-term aspirin dosage for CVD prevention remains debated.
Purpose of the Study:
- To review aspirin's mechanism of action.
- To analyze clinical literature on aspirin dosage, efficacy, and safety in CVD prevention.
Main Methods:
- Systematic review of English-language literature (MEDLINE, EMBASE through Feb 2007).
- Included clinical trials and prospective studies on aspirin dosage and CVD.
- Search terms: aspirin, acetylsalicylic acid, dose.
Main Results:
- Low-dose aspirin (≥30 mg/d) fully inhibits platelet thromboxane production.
- Aspirin 75-81 mg/d is as effective as higher doses for secondary CVD prevention.
- Higher aspirin doses (e.g., 325 mg/d) increase gastrointestinal bleeding risk.
Conclusions:
- Current data do not support routine long-term use of aspirin >75-81 mg/d for CVD prevention.
- Higher aspirin doses offer no additional efficacy but elevate bleeding risks.
- Low-dose aspirin (75-81 mg/d) is recommended for long-term CVD prevention.
Context:
More than 50 million US adults take aspirin regularly for long-term prevention of cardiovascular disease, typically either 81 mg/d or 325 mg/d. Controversy remains regarding the most appropriate long-term daily dose.
Objective:
To review the mechanism of action of aspirin and the clinical literature for relationships among aspirin dosage, efficacy, and safety.
Evidence Acquisition:
A systematic review of the English-language literature was undertaken using MEDLINE and EMBASE (searched through February 2007) and the search term aspirin or acetylsalicylic acid and dose. The search was limited to clinical trials and was extended by a review of bibliographies of pertinent reports of original data and review articles. Published prospective studies using different aspirin dosages in the setting of cardiovascular disease were included.
Evidence Synthesis:
Although pharmacodynamic data demonstrate that long-term aspirin dosages as low as 30 mg/d are adequate to fully inhibit platelet thromboxane production, dosages as high as 1300 mg/d are approved for use. In the United States, 81 mg/d of aspirin is prescribed most commonly (60%), followed by 325 mg/d (35%). The available evidence, predominantly from secondary-prevention observational studies, supports that dosages greater than 75 to 81 mg/d do not enhance efficacy, whereas larger dosages are associated with an increased incidence of bleeding events, primarily related to gastrointestinal tract toxicity.
Conclusions:
Currently available clinical data do not support the routine, long-term use of aspirin dosages greater than 75 to 81 mg/d in the setting of cardiovascular disease prevention. Higher dosages, which may be commonly prescribed, do not better prevent events but are associated with increased risks of gastrointestinal bleeding.
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