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Live Imaging and Quantification of Viral Infection in K18 hACE2 Transgenic Mice Using Reporter-Expressing Recombinant SARS-CoV-2
Published on: November 5, 2021
SARS-CoV-2 binds platelet ACE2 to enhance thrombosis in COVID-19
Si Zhang1, Yangyang Liu2, Xiaofang Wang2
1Department of Biochemistry and Molecular Biology, NHC Key Laboratory of Glycoconjugates Research, School of Basic Medical Sciences, Fudan University, Shanghai, 200032, China. zhangsi@fudan.edu.cn.
Insights
SARS-CoV-2 directly activates platelets via Spike protein binding to ACE2, increasing thrombosis risk in COVID-19 patients. This platelet hyperactivity correlates with disease severity and may drive inflammatory responses.
Area of Science:
- Immunology
- Virology
- Hematology
Background:
- Critically ill COVID-19 patients face high lethal risk due to a pro-thrombotic state.
- Platelet activation is crucial for thrombosis but its role in COVID-19 pathogenesis is unclear.
Purpose of the Study:
- To investigate the role of platelets in COVID-19 pathogenesis.
- To evaluate the direct effects of SARS-CoV-2 on platelet activation and function.
Main Methods:
- Utilized platelets from healthy donors, COVID-19 patients, and transgenic mice.
- Employed RT-PCR, flow cytometry, Western blot, immunofluorescence, and functional assays.
- Assessed in vitro platelet activation, ex vivo thrombus formation, and in vivo thrombosis models.
Main Results:
- COVID-19 patients exhibited increased mean platelet volume (MPV) and hyperactivity, with decreased platelet counts.
- SARS-CoV-2 RNA in blood correlated with platelet hyperactivity; platelets express ACE2 and TMPRSS2.
- SARS-CoV-2 Spike protein directly enhanced platelet activation, aggregation, and thrombus formation via ACE2, involving the MAPK pathway.
Conclusions:
- SARS-CoV-2 Spike protein binding to platelet ACE2 directly activates platelets.
- This SARS-CoV-2-induced platelet activation contributes to thrombus formation and inflammation in COVID-19.
Background:
Critically ill patients diagnosed with COVID-19 may develop a pro-thrombotic state that places them at a dramatically increased lethal risk. Although platelet activation is critical for thrombosis and is responsible for the thrombotic events and cardiovascular complications, the role of platelets in the pathogenesis of COVID-19 remains unclear.
Methods:
Using platelets from healthy volunteers, non-COVID-19 and COVID-19 patients, as well as wild-type and hACE2 transgenic mice, we evaluated the changes in platelet and coagulation parameters in COVID-19 patients. We investigated ACE2 expression and direct effect of SARS-CoV-2 virus on platelets by RT-PCR, flow cytometry, Western blot, immunofluorescence, and platelet functional studies in vitro, FeCl3-induced thrombus formation in vivo, and thrombus formation under flow conditions ex vivo.
Results:
We demonstrated that COVID-19 patients present with increased mean platelet volume (MPV) and platelet hyperactivity, which correlated with a decrease in overall platelet count. Detectable SARS-CoV-2 RNA in the blood stream was associated with platelet hyperactivity in critically ill patients. Platelets expressed ACE2, a host cell receptor for SARS-CoV-2, and TMPRSS2, a serine protease for Spike protein priming. SARS-CoV-2 and its Spike protein directly enhanced platelet activation such as platelet aggregation, PAC-1 binding, CD62P expression, α granule secretion, dense granule release, platelet spreading, and clot retraction in vitro, and thereby Spike protein enhanced thrombosis formation in wild-type mice transfused with hACE2 transgenic platelets, but this was not observed in animals transfused with wild-type platelets in vivo. Further, we provided evidence suggesting that the MAPK pathway, downstream of ACE2, mediates the potentiating role of SARS-CoV-2 on platelet activation, and that platelet ACE2 expression decreases following SARS-COV-2 stimulation. SARS-CoV-2 and its Spike protein directly stimulated platelets to facilitate the release of coagulation factors, the secretion of inflammatory factors, and the formation of leukocyte-platelet aggregates. Recombinant human ACE2 protein and anti-Spike monoclonal antibody could inhibit SARS-CoV-2 Spike protein-induced platelet activation.
Conclusions:
Our findings uncovered a novel function of SARS-CoV-2 on platelet activation via binding of Spike to ACE2. SARS-CoV-2-induced platelet activation may participate in thrombus formation and inflammatory responses in COVID-19 patients.
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