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Prothrombotic antibodies targeting the spike protein's receptor-binding domain in severe COVID-19
Wen Zhu1,2, Yongwei Zheng1, Mei Yu1
1Versiti Blood Research Institute, Milwaukee, WI.
Insights
Severe COVID-19 patients develop prothrombotic antibodies targeting the SARS-CoV-2 spike protein's RBD, similar to heparin-induced thrombocytopenia (HIT) antibodies, contributing to thrombosis. These antibodies activate platelets and correlate with inflammation and tissue damage.
Area of Science:
- Immunology
- Hematology
- Virology
Background:
- Thromboembolic complications are frequent in severe COVID-19.
- Prothrombotic antibodies, similar to those in heparin-induced thrombocytopenia (HIT), are investigated.
- COVID-19 patients exhibit antibodies recognizing heparin and platelet factor 4 (PF4) complexes.
Purpose of the Study:
- To investigate prothrombotic antibodies in severe COVID-19.
- To determine if these antibodies are similar to HIT antibodies.
- To explore the mechanism of thrombosis in COVID-19.
Main Methods:
- Analysis of IgG antibodies in 130 hospitalized COVID-19 patients.
- Assessment of antibody-induced platelet activation and P-selectin expression.
- Cloning of receptor-binding domain (RBD)-specific antibodies and analysis of their sequences.
Main Results:
- 80% of patients had PF4/H-reactive IgG; 41% had platelet-activating antibodies.
- These antibodies were present regardless of heparin exposure, unlike in HIT.
- PF4/H-reactive IgG correlated with antibodies targeting the SARS-CoV-2 spike protein RBD.
- RBD-specific antibodies activated platelets and showed structural similarities to pathogenic HIT antibodies.
- Expanded B cells with specific HCDR3 signatures were found in severe COVID-19 patients.
Conclusions:
- COVID-19 patients develop functional, RBD-specific antibodies that activate platelets.
- These antibodies share characteristics with HIT antibodies, suggesting a novel thrombotic mechanism.
- RBD-specific antibodies may contribute to thrombosis in COVID-19 through platelet activation and inflammation.
Abstract:
Thromboembolic complication is common in severe coronavirus disease 2019 (COVID-19), leading to an investigation into the presence of prothrombotic antibodies akin to those found in heparin-induced thrombocytopenia (HIT). In a study of samples from 130 hospitalized patients, collected 3.6 days after COVID-19 diagnosis, 80% had immunoglobulin G (IgG) antibodies recognizing complexes of heparin and platelet factor 4 (PF4; PF4/H), and 41% had antibodies inducing PF4-dependent P-selectin expression in CpG oligodeoxynucleotide-treated normal platelets. Unlike HIT, both PF4/H-reactive and platelet-activating antibodies were found in patients with COVID-19 regardless of recent heparin exposure. Notably, PF4/H-reactive IgG antibodies correlated with those targeting the receptor-binding domain (RBD) of the severe acute respiratory syndrome coronavirus 2 spike protein. Moreover, introducing exogenous RBD to or removing RBD-reactive IgG from COVID-19 plasma or IgG purified from COVID-19 plasma significantly reduced their ability to activate platelets. RBD-specific antibodies capable of platelet activation were cloned from peripheral blood B cells of patients with COVID-19. These antibodies possessed sequence motifs in the heavy-chain complementarity-determining region 3 (HCDR3), resembling those identified in pathogenic HIT antibodies. Furthermore, IgG+ B cells having these HCDR3 signatures were markedly expanded in patients with severe COVID-19. Importantly, platelet-activating antibodies present in patients with COVID-19 were associated with a specific elevation of platelet α-granule proteins in the plasma and showed a positive correlation with markers for inflammation and tissue damage, suggesting a functionality of these antibodies in patients. The demonstration of functional and structural similarities between certain RBD-specific antibodies in patients with COVID-19 and pathogenic antibodies typical of HIT suggests a novel mechanism by which RBD-specific antibodies might contribute to thrombosis in COVID-19.
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