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T cell apoptosis characterizes severe Covid-19 disease

  • Sonia André
  • , Morgane Picard
  • , Renaud Cezar
  • , Florence Roux-Dalvai
  • , Aurélie Alleaume-Butaux
  • , Calaiselvy Soundaramourty
  • , André Santa Cruz
  • , Ana Mendes-Frias
  • , Clarisse Gotti
  • , Mickaël Leclercq
  • , Alexandre Nicolas
  • , Alexandra Tauzin
  • , Alexandre Carvalho
  • , Carlos Capela
  • , Jorge Pedrosa
  • , António Gil Castro
  • , Lucy Kundura
  • , Paul Loubet
  • , Albert Sotto
  • , Laurent Muller
  • Jean Yves Lefrant, Claire Roger, Pierre Géraud Claret, Sandra Duvnjak, Tu Anh Tran, Gina Racine, Ouafa Zghidi-Abouzid, Pierre Nioche, Ricardo Silvestre, Arnaud Droit, Fabrizio Mammano, Pierre Corbeau, Jérôme Estaquier
  • INSERM U869
  • Laboratoire d’Immunologie
  • CHU de Nîmes
  • C.H.U.L. Research Center
  • Computational Biology Laboratory
  • Université de Paris - BioMedTech Facilities- INSERM US36 | CNRS UMS2009 - Structural and Molecular Analysis Platform
  • Life and Health Sciences Research Institute (ICVS)
  • University of Minho
  • Universidade de Minho
  • Department of Internal Medicine
  • Hospital of Braga
  • CNRS UPR 1142
  • Service des Maladies Infectieuses et Tropicales
  • Service de Réanimation Chirugicale
  • Service de Pédiatrie
  • Structural and Molecular Analysis Platform

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

143 Citations (Scopus)

Résumé

Severe SARS-CoV-2 infections are characterized by lymphopenia, but the mechanisms involved are still elusive. Based on our knowledge of HIV pathophysiology, we hypothesized that SARS-CoV-2 infection-mediated lymphopenia could also be related to T cell apoptosis. By comparing intensive care unit (ICU) and non-ICU COVID-19 patients with age-matched healthy donors, we found a strong positive correlation between plasma levels of soluble FasL (sFasL) and T cell surface expression of Fas/CD95 with the propensity of T cells to die and CD4 T cell counts. Plasma levels of sFasL and T cell death are correlated with CXCL10 which is part of the signature of 4 biomarkers of disease severity (ROC, 0.98). We also found that members of the Bcl-2 family had modulated in the T cells of COVID-19 patients. More importantly, we demonstrated that the pan-caspase inhibitor, Q-VD, prevents T cell death by apoptosis and enhances Th1 transcripts. Altogether, our results are compatible with a model in which T-cell apoptosis accounts for T lymphopenia in individuals with severe COVID-19. Therefore, a strategy aimed at blocking caspase activation could be beneficial for preventing immunodeficiency in COVID-19 patients.

langue originaleAnglais
Pages (de - à)1486-1499
Nombre de pages14
journalCell Death and Differentiation
Volume29
Numéro de publication8
Les DOIs
étatPublié - 1 août 2022
Modification externeOui

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