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Published on: May 24, 2020
Pathophysiological mechanisms of thrombosis in acute and long COVID-19
Haijiao Jing1, Xiaoming Wu1, Mengqi Xiang1
1Department of Hematology, The First Hospital, Harbin Medical University, Harbin, China.
Insights
COVID-19 triggers immune-thrombosis through inflammation, leading to blood clots. Early combined anti-inflammatory and anticoagulant therapies are crucial for managing COVID-19 and long COVID thromboembolic risks.
Area of Science:
- Immunology
- Hematology
- Infectious Diseases
Background:
- COVID-19 is linked to high rates of thrombosis and mortality.
- The hyper-inflammatory response in COVID-19 (cytokine storm) contributes to disease severity.
- The precise role of inflammation in COVID-19-associated thrombosis is not fully understood.
Purpose of the Study:
- To investigate the interplay between inflammation and thrombosis in COVID-19.
- To elucidate the mechanisms of inflammation-driven thrombosis (immune-thrombosis).
- To propose combined anti-inflammatory and anticoagulant therapeutic strategies.
Main Methods:
- Review of existing literature on inflammation, coagulation, and COVID-19.
- Analysis of cellular and molecular mechanisms of immune-thrombosis.
- Evaluation of current antithrombotic treatment gaps and potential improvements.
Main Results:
- Inflammation promotes thrombosis via neutrophil-platelet interactions, monocyte tissue factor, microparticle release, and complement activation.
- Blood cell activation and apoptosis lead to procoagulant microparticle generation, enhancing thrombin and fibrin formation.
- Current antithrombotic therapies have deficiencies, such as lack of combined antiplatelet and anticoagulant use and undefined optimal timing.
Conclusions:
- Combined anti-inflammatory and anticoagulant therapies are proposed for COVID-19.
- Early initiation of antithrombotic therapy, ideally in the early disease stage, is recommended.
- Persistent inflammation, endothelial dysfunction, and coagulation abnormalities may drive long COVID thromboembolic complications.
Abstract:
COVID-19 patients have a high incidence of thrombosis, and thromboembolic complications are associated with severe COVID-19 and high mortality. COVID-19 disease is associated with a hyper-inflammatory response (cytokine storm) mediated by the immune system. However, the role of the inflammatory response in thrombosis remains incompletely understood. In this review, we investigate the crosstalk between inflammation and thrombosis in the context of COVID-19, focusing on the contributions of inflammation to the pathogenesis of thrombosis, and propose combined use of anti-inflammatory and anticoagulant therapeutics. Under inflammatory conditions, the interactions between neutrophils and platelets, platelet activation, monocyte tissue factor expression, microparticle release, and phosphatidylserine (PS) externalization as well as complement activation are collectively involved in immune-thrombosis. Inflammation results in the activation and apoptosis of blood cells, leading to microparticle release and PS externalization on blood cells and microparticles, which significantly enhances the catalytic efficiency of the tenase and prothrombinase complexes, and promotes thrombin-mediated fibrin generation and local blood clot formation. Given the risk of thrombosis in the COVID-19, the importance of antithrombotic therapies has been generally recognized, but certain deficiencies and treatment gaps in remain. Antiplatelet drugs are not in combination with anticoagulant treatments, thus fail to dampen platelet procoagulant activity. Current treatments also do not propose an optimal time for anticoagulation. The efficacy of anticoagulant treatments depends on the time of therapy initiation. The best time for antithrombotic therapy is as early as possible after diagnosis, ideally in the early stage of the disease. We also elaborate on the possible mechanisms of long COVID thromboembolic complications, including persistent inflammation, endothelial injury and dysfunction, and coagulation abnormalities. The above-mentioned contents provide therapeutic strategies for COVID-19 patients and further improve patient outcomes.
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