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Published on: May 24, 2020
Thromboinflammation in long COVID-the elusive key to postinfection sequelae?
Leo Nicolai1, Rainer Kaiser1, Konstantin Stark1
1Department of Medicine I, University Hospital, LMU Munich, Munich, Germany; DZHK (German Center for Cardiovascular Research), partner site Munich Heart Alliance, Germany.
Insights
Thromboinflammation, marked by blood clots and vascular damage, is a key factor in Long COVID. Understanding this link is crucial for developing effective treatments for the millions affected worldwide.
Area of Science:
- Cardiovascular Medicine
- Immunology
- Infectious Diseases
Background:
- Long COVID presents a global health challenge with diverse symptoms.
- Thromboinflammation is increasingly recognized as a significant contributor to post-acute sequelae of COVID-19.
Purpose of the Study:
- To review current evidence linking thromboinflammation to Long COVID.
- To explore potential mechanisms driving thromboinflammation in COVID-19 survivors.
Main Methods:
- Review of existing studies on vascular damage, coagulation, platelet and neutrophil abnormalities in Long COVID.
- Analysis of hypotheses including endothelial damage, viral persistence, and immunopathology.
Main Results:
- Evidence shows persistent vascular damage, endothelial dysfunction, and coagulation abnormalities in Long COVID.
- Increased platelet-neutrophil aggregates and neutrophil extracellular trap formation are observed.
- Microclots, elevated D-dimer, and perfusion deficits suggest microvascular thrombosis.
Conclusions:
- Thromboinflammation, involving vascular damage and hypercoagulability, plays a critical role in Long COVID.
- Further research with large cohorts and mechanistic studies is needed to fully understand and address this phenomenon.
Abstract:
Long COVID is a public health emergency affecting millions of people worldwide, characterized by heterogeneous symptoms across multiple organ systems. Here, we discuss the current evidence linking thromboinflammation to postacute sequelae of COVID-19. Studies have found persistence of vascular damage with increased circulating markers of endothelial dysfunction, coagulation abnormalities with heightened thrombin generation capacity, and abnormalities in platelet counts in postacute sequelae of COVID-19. Neutrophil phenotype resembles acute COVID-19 with an increase in activation and Neutrophil Extracellular Trap formation. These insights are potentially linked by elevated platelet-neutrophil aggregate formation. This hypercoagulable state in turn can lead to microvascular thrombosis, evidenced by microclots and elevated D-dimer in the circulation as well as perfusion abnormalities in the lungs and brains of patients with long COVID. Also, COVID-19 survivors experience an increased rate of arterial and venous thrombotic events. We discuss 3 important, potentially intertwined hypotheses that might contribute to thromboinflammation in long COVID: lasting structural changes, most prominently endothelial damage, caused during initial infection; a persistent viral reservoir; and immunopathology driven by a misguided immune system. Finally, we outline the necessity for large, well-characterized clinical cohorts and mechanistic studies to clarify the contribution of thromboinflammation to long COVID.
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