Apixaban with Antiplatelet Therapy after Acute Coronary Syndrome
This trial evaluated adding apixaban to antiplatelet therapy after acute coronary syndrome, finding no significant reduction in recurrent ischemic events but a significant increase in major bleeding, including intracranial and fatal bleeding, leading to early termination of the study.
Apixaban, an oral, direct factor Xa inhibitor, may reduce the risk of recurrent ischemic events when added to antiplatelet therapy after an acute coronary syndrome. We conducted a randomized, double-blind, placebo-controlled clinical trial comparing apixaban, at a dose of 5 mg twice daily, with placebo, in addition to standard antiplatelet therapy, in patients with a recent acute coronary syndrome and at least two additional risk factors for recurrent ischemic events. The trial was terminated prematurely after recruitment of 7392 patients because of an increase in major bleeding events with apixaban in the absence of a counterbalancing reduction in recurrent ischemic events. With a median follow-up of 241 days, the primary outcome of cardiovascular death, myocardial infarction, or ischemic stroke occurred in 279 of the 3705 patients (7.5%) assigned to apixaban (13.2 events per 100 patient-years) and in 293 of the 3687 patients (7.9%) assigned to placebo (14.0 events per 100 patient-years) (hazard ratio with apixaban, 0.95; 95% confidence interval [CI], 0.80 to 1.11; P=0.51). The primary safety outcome of major bleeding according to the Thrombolysis in Myocardial Infarction (TIMI) definition occurred in 46 of the 3673 patients (1.3%) who received at least one dose of apixaban (2.4 events per 100 patient-years) and in 18 of the 3642 patients (0.5%) who received at least one dose of placebo (0.9 events per 100 patient-years) (hazard ratio with apixaban, 2.59; 95% CI, 1.50 to 4.46; P=0.001). A greater number of intracranial and fatal bleeding events occurred with apixaban than with placebo. The addition of apixaban, at a dose of 5 mg twice daily, to antiplatelet therapy in high-risk patients after an acute coronary syndrome increased the number of major bleeding events without a significant reduction in recurrent ischemic events. (Funded by Bristol-Myers Squibb and Pfizer; APPRAISE-2 ClinicalTrials.gov number, NCT00831441.).
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After an acute coronary syndrome, patients remain at risk of recurrent events. Apixaban, an oral direct factor Xa inhibitor, is a novel anticoagulant that may reduce these events but also poses a risk of bleeding. Apixaban for Prevention of Acute Ischemic and Safety Events (APPRAISE) was a phase 2, double-blind, placebo-controlled, dose-ranging study. Patients (n=1715) with recent ST-elevation or non-ST-elevation acute coronary syndrome were randomized to 6 months of placebo (n=611) or 1 of 4 doses of apixaban: 2.5 mg twice daily (n=317), 10 mg once daily (n=318), 10 mg twice daily (n=248), or 20 mg once daily (n=221). Nearly all patients received aspirin; 76% received clopidogrel. The primary outcome was International Society of Thrombosis and Hemostasis major or clinically relevant nonmajor bleeding. A secondary outcome was cardiovascular death, myocardial infarction, severe recurrent ischemia, or ischemic stroke. At the recommendation of the Data Monitoring Committee, the 2 higher-dose apixaban arms were discontinued because of excess total bleeding. Compared with placebo, apixaban 2.5 mg twice daily (hazard ratio, 1.78; 95% confidence interval, 0.91 to 3.48; P=0.09) and 10 mg once daily (hazard ratio, 2.45; 95% confidence interval, 1.31 to 4.61; P=0.005) resulted in a dose-dependent increase in major or clinically relevant nonmajor bleeding. Apixaban 2.5 mg twice daily (hazard ratio, 0.73; 95% confidence interval, 0.44 to 1.19; P=0.21) and 10 mg once daily (hazard ratio, 0.61; 95% confidence interval, 0.35 to 1.04; P=0.07) resulted in lower rates of ischemic events compared with placebo. The increase in bleeding was more pronounced and the reduction in ischemic events was less evident in patients taking aspirin plus clopidogrel than in those taking aspirin alone. We observed a dose-related increase in bleeding and a trend toward a reduction in ischemic events with the addition of apixaban to antiplatelet therapy in patients with recent acute coronary syndrome. The safety and efficacy of apixaban may vary depending on background antiplatelet therapy. Further testing of apixaban in patients at risk of recurrent ischemic events is warranted.
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120
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Atherothrombosis is the major pathophysiological process responsible for the occurrence of severe ischemic events in patients with cardiovascular diseases. In the United States, atherothrombosis strongly influenced mortality in 2004: One in 2.8 deaths was due to CVD, 1 in 5 deaths to coronary heart disease, and 1 in 17 deaths to stroke.1 Because cardiovascular disease is a progressive and systemic disease, long-term antithrombotic therapies that effectively target the entire arterial vasculature and modulate the key components responsible for thrombus generation are essential to improve patient outcomes. Because platelet activation is determined by multiple receptor-mediated signaling pathways, clinical studies have evaluated the efficacy of multidrug administration in the prevention of atherothrombotic complications.2,3 The major concern with these therapies is the critical balance between anti-ischemic effect and bleeding risk. This review summarizes our understanding of the role of combination antiplatelet therapies in the treatment and prevention of atherothrombosis. Platelet activation and aggregation play a pivotal role in the generation of occlusive thrombus at the site of coronary arterial plaque rupture. In addition, platelets influence various endothelial and inflammatory responses during the initiation and progression of atherosclerosis. Under normal conditions, anucleate circulating platelets are in a quiescent state. Healthy vascular endothelium prevents adhesion and activation of platelets by producing antithrombotic factors such as CD39 (ectoADPase), prostaglandin I2, nitric oxide, heparin, matrix metalloproteinase-9, protein S, and thrombomodulin.3,4 Endothelial activation and denudation and frank atherosclerotic plaque rupture expose the subendothelial matrix and release prothrombotic factors during acute coronary syndromes (ACS) and percutaneous interventions. These processes result in localized platelet adhesion and platelet activation. After adhesion to the exposed subendothelial matrix, platelets are activated by shear and the soluble agonists thromboxane A2 (TxA2), ADP, and thrombin. TxA2 is produced from arachidonic acid, which originates from membrane phospholipids and …
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17
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Lifelong treatment with antiplatelet drugs is recommended following a transient ischemic attack or ischemic stroke. Bleeding complications may offset the benefit of antiplatelet drugs in patients at increased risk of bleeding and low risk of recurrent ischemic events. We aimed to investigate the net benefit of antiplatelet treatment according to an individuals’ bleeding risk. We pooled individual patient data from 6 randomized clinical trials (CAPRIE [Clopidogrel Versus Aspirin in Patients at Risk of Ischemic Events], ESPS-2 [European Stroke Prevention Study-2], MATCH [Management of Atherothrombosis With Clopidogrel in High-Risk Patients], CHARISMA [Clopidogrel for High Atherothrombotic Risk and Ischemic Stabilization, Management, and Avoidance], ESPRIT [European/Australasian Stroke Prevention in Reversible Ischemia Trial], and PRoFESS [Prevention Regimen for Effectively Avoiding Second Strokes]) investigating antiplatelet therapy in the subacute or chronic phase after noncardioembolic transient ischemic attack or stroke. Patients were stratified into quintiles according to their predicted risk of major bleeding with the S2TOP-BLEED score. The annual risk of major bleeding and recurrent ischemic events was assessed per quintile for 4 scenarios: (1) aspirin monotherapy, (2) aspirin-clopidogrel versus aspirin or clopidogrel monotherapy, (3) aspirin-dipyridamole versus clopidogrel, and (4) aspirin versus clopidogrel. Net benefit was calculated for the second, third, and fourth scenario. Thirty seven thousand eighty-seven patients were included in the analyses. Both risk of major bleeding and recurrent ischemic events increased over quintiles of predicted bleeding risk, but risk of ischemic events was consistently higher (eg, from 0.7%/y (bottom quintile) to 3.2%/y (top quintile) for major bleeding on aspirin and from 2.5%/y to 10.2%/y for risk of ischemic events on aspirin). Treatment with aspirin-clopidogrel led to more major bleedings (0.9%–1.7% per year), than reduction in ischemic events (ranging from 0.4% to 0.9/1.0% per year) across all quintiles. There was no clear preference for either aspirin-dipyridamole or clopidogrel according to baseline bleeding risk. Among patients with a transient ischemic attack or ischemic stroke included in clinical trials of antiplatelet therapy, the risk of recurrent ischemic events and of major bleeding increase in parallel. Antiplatelet treatment cannot be individualized solely based on bleeding risk assessment.
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34
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Current guidelines recommend dual antiplatelet therapy (DAPT) that includes aspirin and the platelet P2Y12 ADP receptor antagonist clopidogrel after percutaneous coronary intervention (PCI). These recommendations are based on data that DAPT with the P2Y12 inhibitors clopidogrel reduces major adverse cardiac events after PCI in stable angina and acute coronary syndrome (ACS) patients when compared with aspirin, or aspirin in combination with warfarin.1 Despite treatment with DAPT, patients with ACS undergoing PCI are at elevated risk for recurrent ischemic events compared with stable angina patients in part because of increased platelet thrombotic activity in ACS. In addition, there is considerable interindividual variability in the degree of platelet inhibition achieved by clopidogrel, and high residual platelet activity in the setting of clopidogrel therapy (hyporesponsiveness) is associated with adverse cardiovascular (CV) events after PCI. Clopidogrel hyporesponsiveness is related to a variety of clinical and genetic factors that alter pharmacokinetics, and diabetes, congestive heart failure (CHF), and obesity are associated with reduced efficacy. Clopidogrel is a prodrug that requires conversion by the hepatic cytochrome P450 system (CYP) to an active metabolite, and it can take up to 6 hours for clopidogrel to have maximal effect after the loading dose. Genetic polymorphisms that reduce CYP activity result in decreased hepatic metabolism of clopidogrel. Among persons treated with clopidogrel, carriers of specific reduced function CYP2C19 alleles have impaired clopidogrel conversion, significantly lower levels of active metabolite, diminished platelet inhibition, and higher rates of adverse CV events and stent thrombosis after PCI.2 The prevalence of CYP2C19 polymorphisms ranges from 30% to 60% depending on ethnicity.2,3 Medications that inhibit CYP activity also reduce clopidogrel conversion, and some proton pump inhibitors (PPI) that reduce CYP function (eg, omeprazole) diminish clopidogrel metabolite levels and efficacy measured by platelet function testing. The interaction between clopidogrel and …
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Not that long ago, aspirin, heparin, and warfarin were the only available antithrombotic agents for treating cardiovascular disease patients at risk of thrombotic events. These agents are still used in several places around the world, and it is remarkable how difficult it was to discover other agents that are more effective and/or safer. Since the mid-1980s we have been witnessing an explosion of research on new antithrombotic therapies, resulting in the availability of ticlopidine and clopidogrel (thienopyridine P2Y12-receptor inhibitors), low–molecular-weight heparins (eg, enoxaparin), and intravenous GPIIb/IIIa-receptor inhibitors (abciximab, eptifibatide, and tirofiban), later followed by fondaparinux (a synthetic indirect intravenous anti-Xa agent), bivalirudin (an intravenous direct anti-IIa agent), and more recently, prasugrel (a more potent thienopyridine) (Figure). Figure. The coagulation cascade, platelet activation pathways, and targets of antithrombotic agents. inhib indicates inhibition; LMWH, low–molecular-weight heparin; AT, antithrombin; vWF, von Willebrandt factor; TxA2, thromboxane A2; and ADP, adenosine diphosphate. Articles see pp 1843 and 1854 In the near future, several new oral antithrombotic agents may become available for treating patients with cardiovascular diseases: ticagrelor (the first direct reversible P2Y12 antagonist), dabigatran (an oral direct anti-IIa agent), rivaroxaban (an oral direct anti-Xa agent), and apixaban (also an oral direct anti-Xa agent). Other P2Y12 antagonists (eg, elinogrel) and oral anti-Xa agents (edoxaban, betrixaban, YM150, and TAK-442) are being studied or will be studied in phase-III programs (Figure). New antiplatelet therapies that target pathways not affected by aspirin or P2Y12-receptor antagonists could provide more comprehensive inhibition of platelet activation, and contribute to a greater inhibition of platelet-mediated thrombosis. Inhibition of protease-activated receptor-1 (PAR-1), a receptor for thrombin, is a new attractive approach in the development of better and safer antiplatelet therapy. As shown in the Figure, thrombin is the key effector of the coagulation cascade, but is also …