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Published on: August 18, 2015
Does Thrombosis Play a Causal Role in Lacunar Stroke and Cerebral Small Vessel Disease?
Fatemeh Koohi1, Eric L Harshfield1, Alexey Shatunov1
1Department of Clinical Neurosciences, Stroke Research Group, University of Cambridge, United Kingdom.
Insights
Genetic predisposition to venous thrombosis increases risk for cardioembolic and large-artery stroke, but not lacunar stroke (LS) or cerebral small vessel disease (cSVD) markers. This suggests antithrombotic treatments may be less effective for LS.
Area of Science:
- Genetics
- Neurology
- Cardiovascular Medicine
Background:
- The role of thromboembolism in lacunar stroke (LS) pathogenesis, a consequence of cerebral small vessel disease (cSVD), remains debated.
- Current secondary prevention strategies for LS often involve antiplatelet therapy, yet robust trial evidence in well-defined patient cohorts is limited.
Purpose of the Study:
- To investigate the causal role of altered anticoagulation in LS and cSVD using a two-sample Mendelian randomization approach.
- To evaluate the association between genetic predisposition to venous thrombosis and the risk of different stroke subtypes and cSVD markers.
Main Methods:
- Utilized 119 genetic variants associated with venous thrombosis from a large genome-wide association study as instrumental variables.
- Employed genetic association data for ischemic stroke subtypes (cardioembolic, large-artery, LS) from the GIGASTROKE consortium.
- Included data from magnetic resonance imaging-confirmed LS cases and analyzed associations with white matter hyperintensities and diffusion tensor imaging metrics for cSVD.
Main Results:
- Genetic predisposition to venous thrombosis was significantly associated with increased odds of any ischemic stroke, cardioembolic stroke, and large-artery stroke.
- No significant association was found between genetic risk for venous thrombosis and lacunar stroke (LS) in either GIGASTROKE or MRI-confirmed cohorts.
- Genetically predicted venous thrombosis risk did not correlate with imaging markers of cerebral small vessel disease (cSVD).
Conclusions:
- Altered thrombosis appears to be a causal factor in cardioembolic and large-artery stroke, but not in LS or cSVD.
- These findings suggest that antithrombotic medications might have reduced efficacy in managing cSVD.
- Further clinical trials are warranted to assess the effectiveness of various antithrombotic regimens specifically in well-characterized LS patient cohorts.
Background:
The importance of thromboembolism in the pathogenesis of lacunar stroke (LS), resulting from cerebral small vessel disease (cSVD), is debated, and although antiplatelets are widely used in secondary prevention after LS, there is limited trial evidence from well-subtyped patients to support this approach. We sought to evaluate whether altered anticoagulation plays a causal role in LS and cSVD using 2-sample Mendelian randomization.
Methods:
From a recent genome-wide association study (n=81 190), we used 119 genetic variants associated with venous thrombosis at genome-wide significance (P<5*10-8) and with a linkage disequilibrium r2<0.001 as instrumental variables. We also used genetic associations with stroke from the GIGASTROKE consortium (62 100 ischemic stroke cases: 10 804 cardioembolic stroke, 6399 large-artery stroke, and 6811 LS). In view of the lower specificity for LS with the CT-based phenotyping mainly used in GIGASTROKE, we also used data from patients with magnetic resonance imaging-confirmed LS (n=3199). We also investigated associations with more chronic magnetic resonance imaging features of cSVD, namely, white matter hyperintensities (n=37 355) and diffusion tensor imaging metrics (n=36 533).
Results:
Mendelian randomization analyses showed that genetic predisposition to venous thrombosis was associated with an increased odds of any ischemic stroke (odds ratio [OR], 1.19 [95% CI, 1.13-1.26]), cardioembolic stroke (OR, 1.32 [95% CI, 1.21-1.45]), and large-artery stroke (OR, 1.41 [95% CI, 1.26-1.57]) but not with LS (OR, 1.07 [95% CI, 0.99-1.17]) in GIGASTROKE. Similar results were found for magnetic resonance imaging-confirmed LS (OR, 0.94 [95% CI, 0.81-1.09]). Genetically predicted risk of venous thrombosis was not associated with imaging markers of cSVD.
Conclusions:
These findings suggest that altered thrombosis plays a role in the risk of cardioembolic and large-artery stroke but is not a causal risk factor for LS or imaging markers of cSVD. This raises the possibility that antithrombotic medication may be less effective in cSVD and underscores the necessity for further trials in well-subtyped cohorts with LS to evaluate the efficacy of different antithrombotic regimens in LS.
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