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Stimulation of vascular organoids with SARS-CoV-2 antigens increases endothelial permeability and regulates vasculopathy
Abdullah O Khan; Jasmeet S Reyat; Joshua H Bourne; Martina Colicchia; Maddy L Newby; Joel D Allen; Max Crispin; Esther Youd; Paul G Murray; Graham S Taylor; Zania Stamataki; Alex G Richter; Adam F Cunningham; Matthew Pugh; Julie Rayes.
Afiliación
  • Abdullah O Khan; University of Birmingham
  • Jasmeet S Reyat; University of Birmingham
  • Joshua H Bourne; University of Birmingham
  • Martina Colicchia; University of Birmingham
  • Maddy L Newby; University of Southampton
  • Joel D Allen; University of Southampton
  • Max Crispin; University of Birmingham
  • Esther Youd; University of Glasgow
  • Paul G Murray; University of Birmingham
  • Graham S Taylor; University of Birmingham
  • Zania Stamataki; University of Birmingham
  • Alex G Richter; University of Birminghan
  • Adam F Cunningham; University of Birmingham
  • Matthew Pugh; University of Birmingham
  • Julie Rayes; University of Birmingham
Preprint en Inglés | medRxiv | ID: ppmedrxiv-21255890
ABSTRACT
ObjectiveThrombotic complications and vasculopathy have been extensively associated with severe COVID-19 infection, however the mechanisms by which endotheliitis is induced remain poorly understood. Here we investigate vascular permeability in the context of SARS-CoV-2-mediated endotheliitis in patient samples and a vascular organoid model. Methods and ResultsWe report the presence of the Spike glycoprotein in pericytes associated with pericyte activation and increased endothelial permeability in post-mortem COVID-19 lung autopsies. A pronounced decrease in the expression of the adhesion molecule VE-cadherin is observed in patients with thrombotic complications. Interestingly, fibrin-rich thrombi did not contain platelets, did not colocalize with tissue factor and have heterogenous levels of Von Willebrand factor, suggesting a biomarker-guided therapy might be required to target thrombosis in severe patients. Using a 3D vascular organoid model, we observe that ACE2 is primarily expressed in pericytes adjacent to vascular networks, consistent with patient data, indicating a preferential uptake of the S glycoprotein by these cells. Exposure of vascular organoids to SARS-CoV-2 or its antigens, recombinant trimeric Spike glycoprotein and Nucleocapsid protein, reduced endothelial cell and pericyte viability as well as CD144 expression with no additive effect upon endothelial activation via IL-1{beta}. ConclusionsOur data suggest that pericyte uptake of SARS-CoV-2 or Spike glycoprotein contributes to vasculopathy by altering endothelial permeability increasing the risk of thrombotic complications.
Licencia
cc_by_nc_nd
Texto completo: Disponible Colección: Preprints Base de datos: medRxiv Tipo de estudio: Estudio pronóstico Idioma: Inglés Año: 2021 Tipo del documento: Preprint
Texto completo: Disponible Colección: Preprints Base de datos: medRxiv Tipo de estudio: Estudio pronóstico Idioma: Inglés Año: 2021 Tipo del documento: Preprint
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