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Long-Term Antithrombotic Therapy After Percutaneous Coronary Intervention: Secondary Prevention Beyond One Year
Mohamed Abdelgader1, Roann Khalid2, Kartik Yadav1
1Department of Cardiology, Leeds Teaching Hospitals NHS Trust, LS1 3EX Leeds, UK.
Insights
Long-term antiplatelet therapy after percutaneous coronary intervention (PCI) is shifting. Evidence suggests P2Y12 inhibitor monotherapy or dual-pathway inhibition may be superior to aspirin, balancing ischemic and bleeding risks.
Area of Science:
- Cardiology
- Pharmacology
- Vascular Medicine
Background:
- Dual antiplatelet therapy (DAPT) is standard post-percutaneous coronary intervention (PCI) due to early thrombotic risk.
- Contemporary drug-eluting stents (DES) and shorter DAPT strategies have reduced late stent-related events.
- Long-term risks post-PCI increasingly reflect systemic atherosclerosis rather than stent thrombosis.
Purpose of the Study:
- To review evidence on long-term antiplatelet and antithrombotic therapy beyond one year after PCI.
- To evaluate strategies including P2Y12 inhibitor monotherapy, prolonged DAPT, and dual-pathway inhibition.
- To discuss challenges in special populations and emerging antithrombotic targets.
Main Methods:
- Synthesis of contemporary evidence from clinical trials and studies.
- Evaluation of data supporting lifelong aspirin versus P2Y12 inhibitor monotherapy.
- Examination of prolonged DAPT, dual-pathway inhibition, and precision-based strategies.
Main Results:
- Emerging evidence suggests P2Y12 inhibitor monotherapy may be superior to aspirin in select post-PCI patients.
- Prolonged DAPT and dual-pathway inhibition (rivaroxaban plus aspirin) show benefit in high-risk groups.
- Precision-based strategies and novel targets are being explored for refined antithrombotic approaches.
Conclusions:
- Optimal long-term antithrombotic strategy post-PCI depends on balancing ischemic and bleeding risks, not fixed timelines.
- P2Y12 inhibitor monotherapy and dual-pathway inhibition represent evolving paradigms.
- Management requires individualized approaches, especially in patients with diabetes, CKD, or polyvascular disease.
Abstract:
The early period following percutaneous coronary intervention (PCI), particularly the first days to weeks after stent implantation, is characterized by heightened device-related thrombotic risk, and dual antiplatelet therapy (DAPT) during this phase is well established. With contemporary drug-eluting stents (DES) and abbreviated DAPT strategies, late stent-related events have become less frequent, and long-term risk increasingly reflects underlying systemic atherosclerotic disease. Beyond 12 months, the risk profile shifts further: late events increasingly reflect progressive atherosclerosis and systemic vascular disease rather than stent-related thrombosis. This review synthesizes contemporary evidence on long-term antiplatelet and antithrombotic therapy after PCI, with a focus on the period beyond one year. We evaluate the data supporting for lifelong aspirin as the traditional default strategy, as well as the emerging evidence that P2Y12 inhibitor monotherapy may be superior to aspirin in selected post-PCI populations (HOST-EXAM, HOST-EXAM Extended, PANTHER, SMART-CHOICE 3). This review also examines the role of prolonged DAPT in selected high-risk patients (DAPT Trial, PEGASUS-Thrombolysis in Myocardial Infarction (TIMI) 54) and the paradigm of dual-pathway inhibition with low-dose rivaroxaban plus aspirin (COMPASS, VOYAGER-peripheral artery disease (PAD)). In addition, the review considers protease-activated receptor (PAR) antagonism (TRA 2°P-TIMI 50) and precision-based strategies, including CYP2C19 genotype-guided therapy. Special populations, such as patients with diabetes, chronic kidney disease (CKD), polyvascular disease, and those requiring concomitant oral anticoagulation, present distinct long-term management challenges. Thus, novel targets, including factor XIa inhibitors and PAR-4 antagonists, may further refine the antithrombotic approach. Overall, the optimal long-term strategy after PCI is increasingly defined not by fixed timelines but by the dynamic balance between ischemic and bleeding risk.
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