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Published on: February 20, 2019
Failure of aspirin to prevent atherothrombosis: potential mechanisms and implications for clinical practice
John W Eikelboom1, Graeme J Hankey
1Department of Haematology, Royal Perth Hospital, Box x2213 GPO, Perth, WA 6001, Australia. john.eikelboom@health.wa.gov.au
Insights
Aspirin (acetylsalicylic acid) prevents vascular events but has limitations. Addressing aspirin failure could prevent an additional 20% of serious vascular events in high-risk patients.
Area of Science:
- Cardiology
- Pharmacology
- Vascular Medicine
Background:
- Aspirin (acetylsalicylic acid) is widely used to prevent atherothrombotic events.
- Its mechanism involves inhibiting platelet cyclo-oxygenase-1, reducing thromboxane biosynthesis.
- However, aspirin fails to prevent a significant proportion of vascular events.
Purpose of the Study:
- To explore reasons for aspirin failure in preventing vascular events.
- To identify strategies for improving aspirin's efficacy in high-risk patients.
- To guide clinical practice regarding aspirin therapy and alternatives.
Main Methods:
- Review of mechanisms contributing to aspirin failure.
- Analysis of factors influencing aspirin's antiplatelet effects.
- Discussion of clinical management strategies for aspirin non-responders.
Main Results:
- Aspirin failure can stem from non-atherothrombotic causes, non-adherence, incorrect dosage, alternative platelet activation pathways, or drug interactions.
- Genetic and acquired factors can also modify aspirin's effectiveness.
- Identifying and treating these factors could prevent an additional 20% of vascular events.
Conclusions:
- Clinicians should ensure high-risk patients are compliant and on appropriate aspirin dosage (75-150 mg/day).
- Clopidogrel is an alternative for aspirin-intolerant or non-responsive patients.
- Further research is needed for standardized aspirin effect testing and improved therapies.
Abstract:
Aspirin (acetylsalicylic acid) reduces the odds of serious atherothrombotic vascular events and death in a broad category of high risk patients by about one-quarter. The mechanism is believed to be inhibition of thromboxane biosynthesis by inactivation of platelet cyclo-oxygenase-1 enzyme. However, aspirin is not that effective; it still fails to prevent the majority of serious vascular events. Mechanisms that may account for the failure of aspirin to prevent vascular events include non-atherothrombotic causes of vascular disease, non-adherence to aspirin therapy, an inadequate dosage, alternative "upstream" pathways of platelet activation (e.g. via stimulation of the ADP, collagen or thrombin receptors on platelets), aspirin-insensitive thromboxane biosynthesis (e.g. via monocyte cyclo-oxygenase-2), or drugs that interfere with the antiplatelet effects of aspirin. Genetic or acquired factors may further modify the inhibitory effects of aspirin on platelets (e.g. polymorphisms involving platelet-associated proteins, increased platelet turnover states). Identification and treatment of the potential causes of aspirin failure could prevent at least another 20% of serious vascular events (i.e. over and above those that are currently prevented by aspirin). There is currently no role for routine laboratory testing to measure the antiplatelet effects of aspirin. Clinicians should ensure that patients at high risk of atherothrombosis (>3% risk over 5 years) are compliant with aspirin therapy and are taking the correct dosage (75-150 mg/day). Patients who cannot tolerate aspirin, are allergic to aspirin, or have experienced recurrent serious atherothrombotic events whilst taking aspirin, should be treated with clopidogrel, and patients with acute coronary syndromes benefit from the combination of clopidogrel plus aspirin. Future research is required to standardize and validate laboratory testing of the antiplatelet effects of aspirin and to identify treatments that can both improve these laboratory measures and reduce the risk of future atherothrombotic events.
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