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Cardioembolic and small vessel disease stroke show differences in associations between systemic C3 levels and outcome
Anna Stokowska1, Sandra Olsson, Lukas Holmegaard
1Institute of Neuroscience and Physiology, Department of Clinical Neuroscience and Rehabilitation, The Sahlgrenska Academy at University of Gothenburg, Gothenburg, Sweden.
Insights
Complement system proteins C3 and C3a are elevated in cardioembolic (CE) stroke, with higher C3 levels predicting poor outcomes. These complement markers are not associated with outcomes in small vessel disease (SVD) stroke.
Area of Science:
- Neurology
- Immunology
- Biochemistry
Background:
- The complement system's role in stroke pathophysiology is recognized, but its specific involvement may vary by stroke etiology.
- Understanding complement protein involvement in different stroke subtypes is crucial for targeted therapies.
Purpose of the Study:
- To compare plasma C3 and C3a levels in cardioembolic (CE) and small vessel disease (SVD) ischemic stroke subtypes.
- To evaluate the association of these complement proteins with patient outcomes at three months and two years post-stroke.
Main Methods:
- Plasma C3 and C3a levels were measured using ELISA in 79 CE and 79 SVD stroke patients and controls.
- Functional outcomes were assessed using the modified Rankin Scale at three months and two years.
Main Results:
- In CE stroke, elevated C3 was observed acutely, while C3a was elevated at both acute and follow-up phases. Higher follow-up C3 levels correlated with increased risk of unfavorable outcomes at three months and two years.
- In SVD stroke, C3 and C3a levels were elevated at both time points but did not show significant associations with outcomes.
- Plasma C3a/C3 ratios at three months were associated with favorable two-year outcomes in CE stroke patients, even after adjustment for confounders.
Conclusions:
- Plasma C3 and C3a levels are elevated in both CE and SVD stroke.
- Complement protein levels, particularly C3, are associated with long-term outcomes exclusively in CE stroke patients.
- These findings suggest a potential role for complement modulation in managing CE stroke.
Background:
Activation of the complement system has been proposed to play a role in the pathophysiology of stroke. As the specific involvement of the complement proteins may be influenced by stroke etiology, we compared plasma C3 and C3a levels in patients with cardioembolic (CE) and small vessel disease (SVD) subtypes of ischemic stroke and control subjects and evaluated their association to outcome at three months and two years.
Methodology/Principal Findings:
Plasma C3 and C3a levels in 79 CE and 79 SVD stroke patients, sampled within 10 days and at three months after stroke, and age- and sex-matched control subjects from The Sahlgrenska Academy Study on Ischemic Stroke were measured by ELISA. Functional outcome was assesed with modified Rankin Scale. In the CE group, plasma C3 levels were elevated only in the acute phase, whereas C3a was elevated at both time points. The follow-up phase plasma C3 levels in the upper third were associated with an increased risk of unfavorable outcome at three months (OR 7.12, CI 1.72-29.46, P = 0.007) as well as after two years (OR 8.25, CI 1.61-42.28, P = 0.011) after stroke. These associations withstand adjustment for age and sex. Conversely, three-month follow-up plasma C3a/C3 level ratios in the middle third were associated with favorable outcome after two years both in the univariate analysis (OR 0.19, CI 0.05-0.82, P = 0.026) and after adjustment for age and sex (OR 0.19, CI 0.04-0.88, P = 0.033). In the SVD group, plasma C3 and C3a levels were elevated at both time points but showed no significant associations with outcome.
Conclusions:
Plasma C3 and C3a levels are elevated after CE and SVD stroke but show associations with outcome only in CE stroke.
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