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Aortic atherosclerosis, hypercoagulability, and stroke the APRIS (Aortic Plaque and Risk of Ischemic Stroke) study
Marco R Di Tullio1, Shunichi Homma, Zhezhen Jin
1Department of Medicine, Columbia University Medical Center, New York, New York 10032, USA. md42@columbia.edu
Insights
Aortic plaques increase stroke risk, especially when combined with blood hypercoagulability. This combination also elevates the risk of recurrent stroke and death in patients with ischemic stroke.
Area of Science:
- Cardiovascular Medicine
- Neurology
- Hematology
Background:
- Atherosclerotic plaques in the aortic arch are a known risk factor for ischemic stroke.
- The interplay between aortic plaques and blood hypercoagulability, and its impact on stroke risk, remains unclear.
Purpose of the Study:
- To investigate the association between aortic arch plaques and hypercoagulability.
- To determine the effect of this association on the risk of stroke and subsequent outcomes.
Main Methods:
- Transesophageal echocardiography was used to assess aortic arch plaques in 255 ischemic stroke patients and 209 controls.
- A case-control design evaluated the link between plaques, hypercoagulability, and stroke risk.
- Stroke patients were followed prospectively for recurrent stroke and death.
Main Results:
- Large aortic arch plaques (≥4 mm) were linked to increased stroke risk (OR: 2.4), particularly with ulcerations or thrombus (OR: 3.3).
- Prothrombin fragment F1.2, a marker of thrombin generation, correlated with large plaques in stroke patients.
- Patients with large plaques and high F1.2 levels faced a higher risk of recurrent stroke and death (230 vs. 85 events per 1,000 person-years).
Conclusions:
- Large aortic plaques are associated with blood hypercoagulability in acute ischemic stroke patients.
- Coagulation activation appears to play a role in stroke mechanisms.
- The coexistence of large aortic plaques and hypercoagulability predicts a worse prognosis, with increased risk of recurrent stroke and death.
Objectives:
Our goal was to assess the effect of hypercoagulability on the risk of stroke in patients with aortic plaques.
Background:
Atherosclerotic plaques in the aortic arch are a risk factor for ischemic stroke. Their relationship with blood hypercoagulability, which might enhance their embolic potential and affect treatment and prevention, is not known.
Methods:
We performed transesophageal echocardiography in 255 patients with first acute ischemic stroke and in 209 control subjects matched by age, gender, and race/ethnicity. The association between arch plaques and hypercoagulability, and its effect on the stroke risk, was assessed with a case-control design. Stroke patients were then followed prospectively to assess recurrent stroke and death.
Results:
Large (> or =4 mm) arch plaques were associated with increased stroke risk (adjusted odds ratio [OR]: 2.4, 95% confidence interval [CI]: 1.3 to 4.6), especially when ulcerations or superimposed thrombus were present (adjusted OR: 3.3, 95% CI: 1.4 to 8.2). Prothrombin fragment F 1.2, an indicator of thrombin generation, was associated with large plaques in stroke patients (p = 0.02), but not in control subjects. Over a mean follow-up of 55.1 +/- 37.2 months, stroke patients with large plaques and F 1.2 over the median value had a significantly higher risk of recurrent stroke and death than those with large plaques but lower F 1.2 levels (230 events per 1,000 person-years vs. 85 events per 1,000 person-years; p = 0.05).
Conclusions:
In patients presenting with acute ischemic stroke, large aortic plaques are associated with blood hypercoagulability, suggesting a role for coagulation activation in the stroke mechanism. Coexistence of large aortic plaques and blood hypercoagulability is associated with an increased risk of recurrent stroke and death.
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