Literature DB >> 29531170

rIgG1 Fc Hexamer Inhibits Antibody-Mediated Autoimmune Disease via Effects on Complement and FcγRs.

Rolf Spirig1, Ian K Campbell2, Sandra Koernig2, Chao-Guang Chen2, Bonnie J B Lewis3,4, Rebecca Butcher2, Ineke Muir2, Shirley Taylor2, Jenny Chia2, David Leong2, Jason Simmonds2, Pierre Scotney2, Peter Schmidt2, Louis Fabri2, Andreas Hofmann5, Monika Jordi5, Martin O Spycher5, Susann Cattepoel5, Jennifer Brasseit5, Con Panousis2, Tony Rowe2, Donald R Branch3,4, Adriana Baz Morelli2, Fabian Käsermann5, Adrian W Zuercher1.   

Abstract

Activation of Fc receptors and complement by immune complexes is a common important pathogenic trigger in many autoimmune diseases and so blockade of these innate immune pathways may be an attractive target for treatment of immune complex-mediated pathomechanisms. High-dose IVIG is used to treat autoimmune and inflammatory diseases, and several studies demonstrate that the therapeutic effects of IVIG can be recapitulated with the Fc portion. Further, recent data indicate that recombinant multimerized Fc molecules exhibit potent anti-inflammatory properties. In this study, we investigated the biochemical and biological properties of an rFc hexamer (termed Fc-μTP-L309C) generated by fusion of the IgM μ-tailpiece to the C terminus of human IgG1 Fc. Fc-μTP-L309C bound FcγRs with high avidity and inhibited FcγR-mediated effector functions (Ab-dependent cell-mediated cytotoxicity, phagocytosis, respiratory burst) in vitro. In addition, Fc-μTP-L309C prevented full activation of the classical complement pathway by blocking C2 cleavage, avoiding generation of inflammatory downstream products (C5a or sC5b-9). In vivo, Fc-μTP-L309C suppressed inflammatory arthritis in mice when given therapeutically at approximately a 10-fold lower dose than IVIG, which was associated with reduced inflammatory cytokine production and complement activation. Likewise, administration of Fc-μTP-L309C restored platelet counts in a mouse model of immune thrombocytopenia. Our data demonstrate a potent anti-inflammatory effect of Fc-μTP-L309C in vitro and in vivo, likely mediated by blockade of FcγRs and its unique inhibition of complement activation.
Copyright © 2018 by The American Association of Immunologists, Inc.

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Year:  2018        PMID: 29531170      PMCID: PMC5890536          DOI: 10.4049/jimmunol.1701171

Source DB:  PubMed          Journal:  J Immunol        ISSN: 0022-1767            Impact factor:   5.422


  39 in total

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