Intravenously applied IgG stimulates complement attenuation in a complement-dependent autoimmune disease at the amplifying C3 convertase level

Author:

Lutz Hans U.1,Stammler Pia1,Bianchi Valentina1,Trüeb Ralph M.1,Hunziker Thomas1,Burger Reinhard1,Jelezarova Emiliana1,Späth Peter J.1

Affiliation:

1. From the Institute of Biochemistry, Swiss Federal Institute of Technology, ETH-Hoenggerberg, Zurich, Switzerland; Department of Dermatology, University Hospital of Zurich, Zurich, Switzerland; Department of Dermatology, Inselspital, Berne, Switzerland; Robert Koch Institut, Berlin, Germany; and ZLB Bioplasma, Berne, Switzerland.

Abstract

AbstractIntravenously applied normal human immunoglobulin G (IgG) has anti-inflammatory effects in the treatment of autoimmune diseases. Systemic inflammation can originate from an overreacting amplification loop of the complement system. In blood, C3b2-containing complexes maintain complement amplification much better than the extremely short-lived C3b. Therefore, in patients with the complement-dependent autoimmune disease, dermatomyositis, we studied whether intravenously applied normal human IgG (IVIG) stimulated in vivo inactivation of these complexes. In the course of IVIG treatment, clinically effective in 6 of 8 patients, the concentration of C3b2-containing complexes dropped to 37% ± 14% (n = 6) of the pretreatment level when having infused 0.5 g IgG/kg body weight, increased marginally and in parallel to factor Bb thereafter until full-dose IgG was infused. By day 14 following infusion of 2 g IgG/kg body weight the concentration of C3b2-containing complexes was 66% ± 19%. The plasma concentration of C3 remained constant in myopathic or increased by 15% to 20% in amyopathic patients. In contrast to this, IVIG infusion was associated with consumption of up to 40% of plasma C4 at day 1 to 2 after completion of IVIG infusion. Thus, IVIG had an immediate and long-lasting attenuating effect on complement amplification in vivo, despite the fact that it induced classical complement pathway activation.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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