Related Experiment Video
Updated: Oct 6, 2025

Author Spotlight: Deciphering Coagulation Disorders in Traumatic Brain Injury Patients
Published on: August 4, 2023
Thrombocytopenia in COVID‑19 and vaccine‑induced thrombotic thrombocytopenia
Styliani A Geronikolou1, Işil Takan2, Athanasia Pavlopoulou2
1Clinical, Translational and Experimental Surgery Research Centre, Biomedical Research Foundation Academy of Athens, 11527 Athens, Greece.
Insights
This study maps signaling pathways for COVID-19 and vaccine-induced thrombotic thrombocytopenia (VITT), identifying common and distinct gene expressions. PYCARD, NLP3, and P2RX7 are highlighted as potential therapeutic targets for both conditions.
Area of Science:
- Biomedical research
- Pathophysiology
- Immunology
Background:
- COVID-19 presents complex symptomatology and unpredictable progression, necessitating extensive research.
- Rare cases of thrombotic thrombocytopenia have been observed following SARS-CoV-2 vaccination (VITT).
- Understanding the shared and distinct molecular mechanisms underlying COVID-19 and VITT is crucial for effective treatment.
Purpose of the Study:
- To map the signaling pathways implicated in COVID-19-associated thrombocytopenia and VITT.
- To identify common and unique molecular players in both conditions.
- To explore potential therapeutic targets for these pathologies.
Main Methods:
- Utilized MEDLINE/PubMed database with AI for semantic relation analysis of COVID-19 and VITT terms.
- Employed the STRING database to analyze gene and protein associations.
- Constructed two interactome networks for COVID-19/thrombocytopenia and VITT.
Main Results:
- Thrombocytopenia is a common feature in both COVID-19 and VITT.
- Distinct gene expressions were identified: AURKA, CD46, CD19 in VITT; ADAM10, CDC20, SHC1, STXBP2 common to both but silenced in VITT.
- High node degrees indicate the complexity of COVID-19 and VITT, highlighting the role of cytokines and hypoxia-activated pathways.
Conclusions:
- PYCARD, NLP3, and P2RX7 are identified as key potential therapeutic targets for COVID-19, long-COVID syndrome, and VITT.
- Common molecular nodes are crucial for illness prevention, progression, and treatment.
- The interactome analysis reveals a predisposition to hypoxia-induced thrombosis in these conditions.
Abstract:
The highly heterogeneous symptomatology and unpredictable progress of COVID‑19 triggered unprecedented intensive biomedical research and a number of clinical research projects. Although the pathophysiology of the disease is being progressively clarified, its complexity remains vast. Moreover, some extremely infrequent cases of thrombotic thrombocytopenia following vaccination against SARS‑CoV‑2 infection have been observed. The present study aimed to map the signaling pathways of thrombocytopenia implicated in COVID‑19, as well as in vaccine‑induced thrombotic thrombocytopenia (VITT). The biomedical literature database, MEDLINE/PubMed, was thoroughly searched using artificial intelligence techniques for the semantic relations among the top 50 similar words (>0.9) implicated in COVID‑19‑mediated human infection or VITT. Additionally, STRING, a database of primary and predicted associations among genes and proteins (collected from diverse resources, such as documented pathway knowledge, high‑throughput experimental studies, cross‑species extrapolated information, automated text mining results, computationally predicted interactions, etc.), was employed, with the confidence threshold set at 0.7. In addition, two interactomes were constructed: i) A network including 119 and 56 nodes relevant to COVID‑19 and thrombocytopenia, respectively; and ii) a second network containing 60 nodes relevant to VITT. Although thrombocytopenia is a dominant morbidity in both entities, three nodes were observed that corresponded to genes (AURKA, CD46 and CD19) expressed only in VITT, whilst ADAM10, CDC20, SHC1 and STXBP2 are silenced in VITT, but are commonly expressed in both COVID‑19 and thrombocytopenia. The calculated average node degree was immense (11.9 in COVID‑19 and 6.43 in VITT), illustrating the complexity of COVID‑19 and VITT pathologies and confirming the importance of cytokines, as well as of pathways activated following hypoxic events. In addition, PYCARD, NLP3 and P2RX7 are key potential therapeutic targets for all three morbid entities, meriting further research. This interactome was based on wild‑type genes, revealing the predisposition of the body to hypoxia‑induced thrombosis, leading to the acute COVID‑19 phenotype, the 'long‑COVID syndrome', and/or VITT. Thus, common nodes appear to be key players in illness prevention, progression and treatment.
Related Concept Videos
Venous Thrombosis III: Interprofessional Care
Anticoagulant Drugs: Low-Molecular-Weight Heparins
Disorders of Hemostasis
Thromboembolic Disorders
Two factors primarily cause thromboembolic conditions.
Venous Thrombosis II: Clinical Manifestations and Diagnostic Studies
Anticoagulant Drugs: Vitamin K Antagonists and Direct Oral Anticoagulants
Warfarin, a prominent vitamin K antagonist family member, exerts its effect by inhibiting the enzyme VKORC1 (vitamin K epoxide reductase complex 1). By hindering this enzyme, warfarin...
Blood Transfusion and Agglutination
History
The history of blood transfusion dates back to the 17th century, when early attempts were made in animals. In 1818 James Blundell, a British doctor, performed the first successful human blood transfusion. Later in 1900, Karl...

