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Clinical use of aspirin in ischemic heart disease: past, present and future
Raffaele De Caterina1, Giulia Renda
1Institute of Cardiology, "G. d'Annunzio" University - Chieti, C/o Ospedale SS. Annunziata, Via dei Vestini, 66013 Chieti, Italy. rdecater@unich.it
Insights
Aspirin effectively prevents vascular events in high-risk patients by inhibiting platelet function. While beneficial for secondary prevention, its role in primary prevention requires further research to balance benefits against bleeding risks.
Area of Science:
- Cardiovascular Medicine
- Pharmacology
- Thrombosis Research
Background:
- Aspirin is a widely used antiplatelet medication.
- It inhibits cyclooxygenase activity, reducing thromboxane A2 production.
- This action suppresses platelet aggregation and thrombus formation.
Observation:
- Aspirin therapy significantly reduces vascular events in patients with existing occlusive vascular disease.
- The drug's benefits for secondary prevention of vascular events outweigh the associated bleeding risks.
- Its role in primary prevention remains uncertain due to the need to balance event reduction against increased bleeding.
Findings:
- Antiplatelet therapy with aspirin lowers the risk of serious vascular events by approximately 25% in high-risk individuals.
- While effective in preventing thrombosis, aspirin use is associated with an increased risk of bleeding.
- The absolute increase in major bleeds is considerably smaller than the vascular event reduction.
Implications:
- Aspirin is a foundational treatment for acute coronary syndromes, chronic ischemic heart disease, and percutaneous coronary intervention.
- Ongoing studies aim to clarify aspirin's role in primary prevention, particularly for high-risk groups like diabetics.
- Identifying individuals who benefit most from aspirin prophylaxis is crucial for optimizing its clinical application.
Abstract:
Aspirin is an antiplatelet drug, inhibiting the cyclooxygenase activity of platelet prostaglandin H synthase-1 and almost complete suppressing platelet capacity to generate the prothrombotic and proatherogenic thromboxane A2. Antiplatelet therapy with aspirin reduces the risk of serious vascular events by about a quarter in patients who are at high risk because they already have occlusive vascular disease. However, the inhibition of thromboxane-dependent platelet function by aspirin is effective for the prevention of thrombosis, but is also associated with excess bleeding, although the absolute increase in major gastrointestinal or other major extracranial bleeds is an order of magnitude smaller. For secondary prevention of vascular events, the benefits of aspirin therapy substantially exceed the risks. Therefore, aspirin is a cornerstone of antithrombotic therapy in acute coronary syndromes, in chronic ischemic heart disease and in percutaneous coronary intervention. On the other hand, the role of aspirin in primary prevention remains uncertain and it is still debated, because the absolute risk of vascular complications is the major determinant of the absolute benefit of antiplatelet prophylaxis and the reduction in vascular events needs to be weighed against any increase in major bleeds. Future data from ongoing studies will help us to identify people at high vascular risk who take advantage from aspirin therapy for primary prevention or will indicate if specific category of high risk patients, like patients with diabetes, could be better protected from an increase in the frequency of aspirin administration.
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