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Updated: Aug 25, 2025

Flow Cytometry Analysis of Tissue Factor Expression in Human Platelets
Published on: November 22, 2024
Thrombopoietin participates in platelet activation in COVID-19 patients
Enrico Lupia1, Marialessia Capuano2, Barbara Vizio3
1Department of Medical Sciences, University of Turin, Turin, Italy; Emergency Medicine Unit, "Città della Salute e della Scienza di Torino - Molinette" University Hospital, Turin, Italy.
Insights
Elevated thrombopoietin (THPO) levels in COVID-19 patients can help diagnose the disease and predict severity. THPO also contributes to immunothrombosis by increasing platelet activation and leukocyte-platelet interactions.
Area of Science:
- Hematology
- Immunology
- Infectious Diseases
- Critical Care Medicine
Background:
- COVID-19 pathogenesis involves platelet activation and hemostatic alterations, potentially leading to immunothrombosis and organ damage.
- Thrombopoietin (THPO) primes platelet activation and leukocyte-platelet interaction, with elevated levels observed in critical illnesses.
- Interleukin-6 (IL-6) is a key inflammatory mediator in these processes, prompting investigation into IL-6 inhibitors.
Purpose of the Study:
- To measure THPO and IL-6 concentrations in COVID-19 patients at Emergency Department (ED) presentation.
- To evaluate THPO and IL-6 as diagnostic and prognostic biomarkers for COVID-19.
- To investigate the role of THPO in priming in vitro platelet activation and leukocyte-platelet interaction in COVID-19 patients.
Main Methods:
- Prospective cohort study including 66 patients (47 COVID-19, 19 Non-COVID-19) and 18 healthy controls.
- In vitro experiments using plasma from COVID-19 patients or controls to assess effects on platelet-rich plasma and whole blood from healthy donors.
- THPO's biological activity was indirectly studied by blocking its action.
Main Results:
- COVID-19 patients exhibited higher THPO levels than Non-COVID-19 patients and healthy subjects (AUC 0.73 for diagnosis).
- THPO levels were higher in severe COVID-19 cases compared to mild cases (AUC 0.71 for severity prediction).
- IL-6 levels were higher in severe COVID-19 patients (AUC 0.83), correlated with THPO, and decreased after tocilizumab treatment, indicating IL-6-stimulated hepatic THPO synthesis. In vitro, COVID-19 plasma enhanced platelet aggregation and leukocyte-platelet binding, effects reduced by THPO inhibition.
Conclusions:
- Elevated THPO serves as an early biomarker for COVID-19 diagnosis and risk stratification for severe illness.
- Increased THPO may promote immunothrombosis/thromboinflammation by enhancing platelet activation and leukocyte-platelet interactions in COVID-19.
Background:
The pathogenesis of coronavirus disease 2019 (COVID-19) is characterized by enhanced platelet activation and diffuse hemostatic alterations, which may contribute to immunothrombosis/thromboinflammation and subsequent development of target-organ damage. Thrombopoietin (THPO), a growth factor essential to megakariocyte proliferation, is known to prime platelet activation and leukocyte-platelet interaction. In addition, THPO concentrations increase in several critical diseases, such as acute cardiac ischemia and sepsis, thus representing a potential diagnostic and prognostic biomarker. Furthermore, several data suggest that interleukin (IL)-6 is one of the most important inflammatory mediators involved in these phenomena, which led to explore the potential therapeutic role of IL-6 inhibitors. In this prospective cohort study, we aimed to study THPO and IL-6 concentrations in COVID-19 patients at the time of first clinical evaluation in the Emergency Department (ED), and to investigate their potential use as diagnostic and prognostic biomarkers. In addition, we sought to explore the role of THPO contained in plasma samples obtained from COVID-19 patients in priming in vitro platelet activation and leukocyte-platelet interaction.
Methods:
We enrolled 66 patients presenting to the ED with symptoms suggestive of COVID-19, including 47 with confirmed COVID-19 and 19 in whom COVID-19 was excluded (Non-COVID-19 patients). As controls, we also recruited 18 healthy subjects. In vitro, we reproduced the effects of increased circulating THPO on platelet function by adding plasma from COVID-19 patients or controls to platelet-rich plasma or whole blood obtained by healthy donors, and we indirectly studied the effect of THPO on platelet activation by blocking its biological activity.
Findings:
THPO levels were higher in COVID-19 patients than in both Non-COVID-19 patients and healthy subjects. Studying THPO as diagnostic marker for the diagnosis of COVID-19 by receiver-operating-characteristic (ROC) statistics, we found an area under the curve (AUC) of 0.73, with an optimal cut-off value of 42.60 pg/mL. IL-6 was higher in COVID-19 patients than in healthy subjects, but did not differ between COVID-19 and Non-COVID-19 patients. THPO concentrations measured at the time of diagnosis in the ED were also higher in COVID-19 patients subsequently developing a severe disease than in those with mild disease. Evaluating THPO as biomarker for severe COVID-19 using ROC analysis, we found an AUC of 0.71, with an optimal cut-off value of 57.11 pg/mL. IL-6 was also higher in severe than in mild COVID-19 patients, with an AUC for severe COVID-19 of 0.83 and an optimal cut-off value of 23 pg/ml. THPO concentrations correlated with those of IL-6 (r=0.2963; p=0.043), and decreased 24 h after the administration of tocilizumab, an IL-6 receptor blocking antibody, showing that the increase of THPO levels depends on IL-6-stimulated hepatic synthesis. In vitro, plasma obtained from COVID-19 patients, but not from healthy subjects, primed platelet aggregation and leukocyte-platelet binding, and these effects were reduced by inhibiting THPO activity.
Interpretation:
Increased THPO may be proposed as an early biomarker for the diagnosis of COVID-19 and for the identification of patients at risk of developing critical illness. Elevated THPO may contribute to enhance platelet activation and leukocyte-platelet interaction in COVID-19 patients, thus potentially participating in immunothrombosis/thromboinflammation.
Funding:
This work was supported by Ministero dell'Università e della Ricerca Scientifica e Tecnologica (MURST) ex 60% to GM and EL.
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