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Evaluation of coagulation status using clot waveform analysis in general ward patients with COVID-19
Junko Ichikawa1, Ryouta Okazaki2, Tomoki Fukuda2
1Department of Anesthesiology, Tokyo Women's Medical University Medical Centre, East, Tokyo, Japan. htwfx872@yahoo.co.jp.
Insights
COVID-19 patients exhibit hypercoagulability, indicated by clot waveform analysis (CWA) changes. These CWA alterations may help identify individuals at high risk for thromboembolism.
Area of Science:
- Hematology
- Infectious Diseases
- Critical Care Medicine
Background:
- COVID-19 systemic cytokine response promotes a prothrombotic state.
- Viscoelastic testing can assess hypercoagulability and predict patient outcomes.
- Clot waveform analysis (CWA) is a viscoelastic method to evaluate clot dynamics.
Purpose of the Study:
- To investigate alterations in CWA parameters in hospitalized COVID-19 patients.
- To compare CWA profiles between COVID-19 patients and healthy individuals.
- To correlate CWA findings with clinical severity and laboratory markers.
Main Methods:
- Retrospective study comparing 62 COVID-19 patients with 67 healthy controls.
- Analysis of CWA parameters (min1, min2, max2, delta change) before anticoagulation.
- Evaluation of demographic, clinical, and laboratory data, including coagulation markers.
Main Results:
- COVID-19 patients showed significantly higher CWA, fibrinogen, and D-dimer levels (p < 0.001).
- CWA profiles indicated hypercoagulability with increased clot density, velocity, and acceleration.
- Elevated CWA parameters correlated with higher fibrinogen, D-dimer, and CRP, particularly in critically ill patients.
Conclusions:
- Hospitalized COVID-19 patients demonstrate hypercoagulopathy on admission, detectable by CWA.
- CWA may serve as a valuable tool for identifying COVID-19 patients at elevated risk of thromboembolic events.
- The severity of hypercoagulopathy, as indicated by CWA, is associated with disease severity and inflammatory markers.
Abstract:
Coronavirus disease (COVID-19)-related systemic cytokine response induces the production of procoagulant factors, which predisposes patients to a prothrombotic state. Viscoelastic testing can identify the degree of hypercoagulability, which is related to outcomes. We aimed to study the changes in clot waveform analysis (CWA) parameters in COVID-19 patients on hospital admission compared to those in a group of healthy individuals. We conducted a retrospective study of COVID-19 patients admitted to general wards and evaluated demographic and clinical parameters as well as laboratory parameters, including coagulation parameters. CWA data from patients (n = 62) with COVID-19 prior to the initiation of anticoagulation therapy were compared with those from healthy controls (n = 67). The measured CWA parameters were min1, min2, max2, and delta change. CWA, fibrinogen, and D-dimer values were higher in COVID-19 patients than in healthy controls (p < 0.001). CWA profiles were consistent with hypercoagulability and characterized by an increase in density, velocity, and acceleration of clot formation. Activated partial thromboplastin time, fibrinogen, D-dimer, and C-reactive protein (CRP) values were higher in patients in whom all CWA parameters were raised than in patients with just a few elevated CWA parameters, while Sequential Organ Failure Assessment scores, prothrombin time, fibrin degradation product levels and platelet counts did not differ between the two groups. CWA variables showed hypercoagulopathy on admission in COVID-19 patients who were hospitalized in the general ward, and this pattern was more pronounced in critically ill patients with elevated fibrinogen, D-dimer, and CRP levels. Our results may help identify patients at high risk of thromboembolism.
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