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Published on: August 30, 2024
Crosstalk between coagulation and complement activation promotes cardiac dysfunction in arrhythmogenic right
Jie Ren1, Konstantinos Tsilafakis2, Liang Chen1
1Department of Cardiac Surgery, State Key Laboratory of Cardiovascular Disease, Fuwai Hospital, National Center for Cardiovascular Diseases, Chinese Academy of Medical Sciences and Peking Union Medical College, China.
Insights
The study reveals that the interaction between coagulation and complement systems worsens arrhythmogenic right ventricular cardiomyopathy (ARVC). Targeting this crosstalk may offer new diagnostic and therapeutic strategies for ARVC patients.
Area of Science:
- Cardiology
- Immunology
- Pathophysiology
Background:
- Complement components are upregulated in arrhythmogenic right ventricular cardiomyopathy (ARVC) myocardium.
- Inhibition of complement receptor C5aR ameliorates disease severity in a mouse model of ARVC.
- The precise mechanism of complement activation in ARVC requires further elucidation.
Purpose of the Study:
- To investigate the mechanism of complement activation in ARVC.
- To explore the interplay between complement and coagulation systems in ARVC pathogenesis.
- To identify potential therapeutic targets for ARVC.
Main Methods:
- Detection of complement and coagulation factors using immunostaining, RT-PCR, and western blot.
- Generation of C3 knockout in desmin-deficient mice (ARVC model) to assess complement pathway independence.
- Evaluation of coagulation system interventions and assessment of plasma sC5b9 levels in ARVC patients.
Main Results:
- Complement system activation in ARVC myocardium, potentially mediated by autoantibodies.
- Evidence of C5 activation independent of the conventional pathway, linked to the coagulation system.
- Crosstalk between complement and coagulation exacerbates myocardial injury, reduced by thrombin inhibition; elevated sC5b9 and thrombin correlate with mortality in ARVC patients.
Conclusions:
- Crosstalk between coagulation and complement systems plays a critical role in ARVC cardiac dysfunction.
- This interaction represents a potential therapeutic target for ARVC.
- Understanding this crosstalk has significant clinical implications for ARVC diagnosis and treatment.
Abstract:
Aims: We previously found that complement components are upregulated in the myocardium of patients with arrhythmogenic right ventricular cardiomyopathy (ARVC), and inhibiting the complement receptor C5aR reduces disease severity in desmin knockout (Des ) mice, a model for ARVC. Here, we examined the mechanism underlying complement activation in ARVC, revealing a potential new therapeutic target. Methods: First, immunostaining, RT-PCR and western blot were used to detect the expression levels of complement and coagulation factors. Second, we knocked out the central complement component C3 in Des mice (ARVC model) by crossing Des mice with C3 mice to explore whether complement system activation occurs independently of the conventional pathway. Then, we evaluated whether a targeted intervention to coagulation system is effective to reduce myocardium injury. Finally, the plasma sC5b9 level was assessed to investigate the role in predicting adverse cardiac events in the ARVC cohort. Results: The complement system is activated in the myocardium in ARVC. Autoantibodies against myocardial proteins provided a possible mechanism underlying. Moreover, we found increased levels of myocardial C5 and the serum C5a in Des mice compared to wild-type mice, indicating that C5 is activated independently from the conventional pathway, presumably via the coagulation system. Crosstalk between the complement and coagulation systems exacerbated the myocardial injury in ARVC mice, and this injury was reduced by using the thrombin inhibitor lepirudin. In addition, we found significantly elevated plasma levels of sC5b9 and thrombin in patients, and this increase was correlated with all-cause mortality. Conclusions: These results suggest that crosstalk between the coagulation and complement systems plays a pathogenic role in cardiac dysfunction in ARVC. Thus, understanding this crosstalk may have important clinical implications with respect to diagnosing and treating ARVC.
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