4.7 Article

Platelets expressing IgG receptor Fc gamma RIIA/CD32A determine the severity of experimental anaphylaxis

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SCIENCE IMMUNOLOGY
卷 3, 期 22, 页码 -

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AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/sciimmunol.aan5997

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资金

  1. European Research Council (ERC)-Seventh Framework Program [ERC-2013-CoG 616050]
  2. Jeunes Chercheuses/Jeunes Chercheurs grant from the Agence National de la Recherche [ANR-16-CE15-0012-01]
  3. Institut Pasteur, INSERM
  4. Societe Francaise d'Allergologie (Soutien de la Recherche en Allergologie)
  5. Etablissement Francais du Sang
  6. Universite Pierre et Marie Curie
  7. Pasteur-Paris University (PPU) International PhD program
  8. Institut Carnot Pasteur Maladies Infectieuses
  9. Balsan company
  10. European Union's Horizon 2020 research and innovation program under the Marie Sklodowska-Curie grant [665807]
  11. Labex Milieu Interieur, Institut Pasteur
  12. Assistance Publique-Hopitaux de Paris (Paris, France)
  13. Institut Pasteur (Paris, France) (Postes d'accueil pour Praticiens Hospitaliers)
  14. INSERM, SFAR (Societe Francaise d'Anesthesie et de Reanimation)
  15. SRLF (Societe de Reanimation de Langue Francaise) through the Bourse de Recherche du Comite d'interface INSERM-SFAR-SRLF

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Platelets are key regulators of vascular integrity; however, their role in anaphylaxis, a life-threatening systemic allergic reaction characterized by the loss of vascular integrity and vascular leakage, remains unknown. Anaphylaxis is a consequence of inappropriate cellular responses triggered by antibodies to generally harmless antigens, resulting in a massive mediator release and rapidly occurring organ dysfunction. Human platelets express receptors for immunoglobulin G (IgG) antibodies and can release potent mediators, yet their contribution to anaphylaxis has not been previously addressed in mouse models, probably because mice do not express IgG receptors on platelets. We investigated the contribution of platelets to IgG-dependent anaphylaxis in human IgG receptor-expressing mouse models and a cohort of patients suffering from drug-induced anaphylaxis. Platelet counts dropped immediately and markedly upon anaphylaxis induction only when they expressed the human IgG receptor Fc gamma RIIA/CD32A. Platelet depletion attenuated anaphylaxis, whereas thrombocythemia substantially worsened its severity. Fc gamma RIIA-expressing platelets were directly activated by IgG immune complexes in vivo and were sufficient to restore susceptibility to anaphylaxis in resistant mice. Serotonin released by activated platelets contributed to anaphylaxis severity. Data from a cohort of patients suffering from drug-induced anaphylaxis indicated that platelet activation was associated with anaphylaxis severity and was accompanied by a reduction in circulating platelet numbers. Our findings identify platelets as critical players in IgG-dependent anaphylaxis and provide a rationale for the design of platelet-targeting strategies to attenuate the severity of anaphylactic reactions.

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