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Published on: April 14, 2023
Complement activation is associated with poor outcome after out-of-hospital cardiac arrest
Viktoriia Chaban1, Espen R Nakstad2, Henrik Stær-Jensen3
1Dept. of Immunology, University of Oslo and Oslo University Hospital, Oslo, Norway.
Insights
Complement activation after cardiac arrest is linked to poor neurological outcomes. Elevated levels of complement products and endothelial activation markers at admission indicate a higher risk of adverse cerebral outcomes, including death, in these patients.
Area of Science:
- Immunology
- Cardiology
- Neurology
Background:
- Cardiopulmonary resuscitation (CPR) following cardiac arrest can trigger systemic ischemia-reperfusion injury.
- This injury may activate the innate immune system, particularly the complement system.
- The study investigates the link between complement activation and endothelial dysfunction with neurological outcomes post-CPR.
Purpose of the Study:
- To determine if complement activation and soluble endothelial activation markers are associated with cerebral outcomes after cardiac arrest.
- To assess the relationship between specific complement activation products (C3bc, sC5b-9) and endothelial markers (syndecan-1, sE-selectin, thrombomodulin, VCAM) and patient outcomes.
Main Methods:
- A cohort of 232 patients resuscitated from out-of-hospital cardiac arrest was studied.
- Plasma samples were analyzed for complement activation products (C3bc, sC5b-9) and soluble CD14 at admission and day three.
- Soluble markers of endothelial activation were measured, and cerebral outcomes were assessed at six months using the Cerebral Performance Category scale.
Main Results:
- Higher levels of C3bc and sC5b-9 were observed at admission and in patients with poor outcomes.
- Elevated sC5b-9 at admission was initially associated with poor outcome, though this lost significance when considering time to return of spontaneous circulation.
- Endothelial activation markers increased post-admission, with sE-selectin and thrombomodulin significantly higher in patients with poor outcomes.
Conclusions:
- Complement system activation, indicated by sC5b-9 levels, is associated with poor neurological outcomes in cardiac arrest survivors.
- Subsequent endothelial cell activation appears to play a role in the adverse outcomes observed.
- These findings highlight the potential role of the complement system in post-cardiac arrest brain injury.
Background:
Cardiopulmonary resuscitation after cardiac arrest initiates a whole-body ischemia-reperfusion injury, which may activate the innate immune system, including the complement system. We hypothesized that complement activation and subsequent release of soluble endothelial activation markers were associated with cerebral outcome including death.
Methods:
Outcome was assessed at six months and defined by cerebral performance category scale (1-2; good outcome, 3-5; poor outcome including death) in 232 resuscitated out-of-hospital cardiac arrest patients. Plasma samples obtained at admission and day three were analysed for complement activation products C3bc, the soluble terminal complement complex (sC5b-9), and soluble CD14. Endothelial cell activation was measured by soluble markers syndecan-1, sE-selectin, thrombomodulin, and vascular cell adhesion molecule.
Results:
Forty-nine percent of the patients had good outcome. C3bc and sC5b-9 were significantly higher at admission compared to day three (p < 0.001 for both) and in patients with poor compared to good outcome (p = 0.03 and p < 0.001, respectively). Unadjusted, higher sC5b-9 at admission was associated with poor outcome (odds ratio 1.08 (95% CI 1.01-1.14), p = 0.024). Adjusted, sC5b-9 was still associated with outcome, but the association became non-significant when time to return-of-spontaneous-circulation above 25 min was included as a covariate. Endothelial cell activation markers increased from admission to day three, but only sE-selectin and thrombomodulin were significantly higher in patients with poor versus good outcome (p = 0.004 and p = 0.03, respectively) and correlated to sCD14 and sC5b-9/C3bc, respectively.
Conclusion:
Complement system activation, reflected by sC5b-9 at admission, leading to subsequent endothelial cell activation, was associated with poor outcome in out-of-hospital cardiac arrest patients.
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