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Published on: August 4, 2023
[Peculiarities of blood coagulation disorders in patients with COVID-19]
N G Evtugina1, S S Sannikova2, A D Peshkova1
1Kazan Federal University.
Insights
COVID-19 coagulopathy, primarily hypercoagulability, strongly correlates with inflammation and disease severity. Monitoring hemostasis is crucial for managing thrombotic risks in patients.
Area of Science:
- Hematology
- Infectious Diseases
- Critical Care Medicine
Context:
- COVID-19 presents with significant hemostatic derangements.
- Coagulopathy is a key factor influencing disease severity and outcomes.
Purpose:
- To investigate the relationship between hemostatic disorders and inflammation in COVID-19.
- To assess the role of coagulopathy in disease course and patient outcomes.
Summary:
- Laboratory signs of coagulopathy, predominantly hypercoagulability, were observed in most COVID-19 patients despite anticoagulant therapy.
- This hypercoagulability directly correlated with systemic inflammation, liver/kidney dysfunction, disease severity, and mortality.
- High C-reactive protein levels in some cases masked underlying thrombophilia, and persistent hyperfibrinogenemia/D-dimer suggested microthrombosis.
Impact:
- Findings underscore the necessity of vigilant laboratory monitoring of hemostasis in COVID-19 patients.
- Highlights the importance of proactive prophylaxis and treatment strategies for thrombotic complications associated with COVID-19.
Aim:
To study the relationship of hemostatic disorders with inflammation and estimate their role in the course and outcomes of COVID-19.
Materials And Methods:
We examined 215 consecutive patients with moderate and severe forms of acute COVID-19. The patients were on anticoagulants and immunosuppressive drugs. Hemostasis was assessed using the thrombodynamics assay, thromboelastography, fibrinogen and D-dimer levels, prothrombin time, and soluble fibrin-monomer complexes (ethanol gelation test). The hemostatic parameters were correlated with hematological and biochemical tests, including markers of inflammation (C-reactive protein, interleukins 6 and 8), as well as with the disease severity and outcomes.
Results:
Laboratory signs of coagulopathy were revealed in the vast majority of the cases. Despite the use of low-molecular-weight heparins in the prophylactic and therapeutic doses, coagulopathy in COVID-19 manifested predominantly as hypercoagulability that correlated directly with the systemic inflammation and metabolic changes due to liver and kidney dysfunction. A direct relationship was found between the grade of coagulopathy and the severity of COVID-19, including comorbidities and the mortality. The chronometric hypocoagulability observed in about 1/4 cases was associated with a high level of C-reactive protein, which may decelerate coagulation in vitro and thereby mask the true inflammatory thrombophilia. Persistent hyperfibrinogenemia and high D-dimer in the absence of consumption coagulopathy suggest the predominance of local and/or regional microthrombosis over disseminated intravascular coagulation.
Conclusion:
The results obtained substantiate the need for laboratory monitoring of hemostasis and active prophylaxis and treatment of thrombotic complications in COVID-19.
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