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Complement and complement regulatory proteins are upregulated in lungs of COVID-19 patients
Xiaowen Ge1, Zhui Yu2, Xinxin Guo1
1Department of Pathology, Zhongshan Hospital, Fudan University, Fenglin Road 180, Shanghai 200032, PR China.
Insights
COVID-19 pneumonia involves lung tissue damage and complement system overactivation. Complement C3 deposition and regulatory protein expression indicate potential therapeutic targets for COVID-19.
Area of Science:
- Pathology
- Immunology
- Pulmonology
Background:
- COVID-19 pneumonia presents significant pathological changes in lung tissues.
- The role of the complement system in COVID-19 pathogenesis requires further elucidation.
Purpose of the Study:
- To investigate pathological alterations in COVID-19 pneumonia lungs.
- To examine the activation status of the local complement system in COVID-19.
Main Methods:
- Hematoxylin-eosin staining for pathological analysis of lung sections.
- Immunohistochemistry to detect complement components (C3, C3b/iC3b/C3d, C5b-9) and regulatory proteins (CD59, CD46, CD55).
Main Results:
- Observed fibrin exudation and "alveolar emboli" structures contributing to lung consolidation and thrombosis.
- Demonstrated hyper-activation of the complement system with extensive C3, C3b/iC3b/C3d, and C5b-9 deposition.
- Found increased expression of complement regulatory proteins CD55 and CD59, but not CD46, suggesting a protective feedback mechanism.
Conclusions:
- Complement system hyper-activation and associated thrombosis are implicated in COVID-19 lung pathology.
- Increased CD55 and CD59 expression may represent a host defense response to complement overactivation.
- Targeting the complement system offers a potential therapeutic strategy for COVID-19.
Abstract:
We explored the pathological changes and the activation of local complement system in COVID-19 pneumonia. Lung paraffin sections of COVID-19 infected patients were analyzed by HE (hematoxylin-eosin) staining. The deposition of complement C3, the deposition of C3b/iC3b/C3d and C5b-9, and the expression of complement regulatory proteins, CD59, CD46 and CD55 were detected by immunohistochemistry. In COVID-19 patients' lung tissues, fibrin exudation, mixed with erythrocyte, alveolar macrophage and shed pneumocyte are usually observed in the alveoli. The formation of an "alveolar emboli" structure may contribute to thrombosis and consolidation in lung tissue. In addition, we also found that compared to normal tissue, the lung tissues of COVID-19 patients displayed the hyper-activation of complement that is represented by extensive deposition of C3, C3b/iC3b/C3d and C5b-9, and the increased expression level of complement regulatory proteins CD55, and especially CD59 but not CD46. The thrombosis and consolidation in lung tissues may contribute to the pathogenesis of COVID-19. The increased expression of CD55 and CD59 may reflect a feedback of self-protection on the complement hyper-activation. Further, the increased C3 deposition and the strongly activated complement system in lung tissues may suggest the rationale of complement-targeted therapeutics in conquering COVID-19.
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