Complement C3 activation is required for antiphospholipid antibody-induced fetal loss

V Michael Holers, Guillermina Girardi, Lian Mo, Joel M Guthridge, Hector Molina, Silvia S Pierangeli, Ricardo Espinola, Liu E Xiaowei, Dailing Mao, Christopher G Vialpando, Jane E Salmon

Research output: Contribution to journalArticlepeer-review

527 Citations (Scopus)

Abstract

The antiphospholipid syndrome (APS) is characterized by recurrent fetal loss, vascular thrombosis, and thrombocytopenia occurring in the presence of antiphospholipid (aPL) antibodies. The pathogenesis of fetal loss and tissue injury in APS is incompletely understood, but is thought to involve platelet and endothelial cell activation as well as procoagulant effects of aPL antibodies acting directly on clotting pathway components. Recent studies have shown that uncontrolled complement activation in the placenta leads to fetal death in utero. We hypothesized that aPL antibodies activate complement in the placenta, generating split products that mediate placental injury and lead to fetal loss and growth retardation. To test this hypothesis, we used a murine model of APS in which pregnant mice are injected with human IgG containing aPL antibodies. We found that inhibition of the complement cascade in vivo, using the C3 convertase inhibitor complement receptor 1-related gene/protein y (Crry)-Ig, blocks fetal loss and growth retardation. Furthermore, mice deficient in complement C3 were resistant to fetal injury induced by aPL antibodies. While antigenic epitopes recognized by aPL antibodies are important in the pathogenesis of APS, our data show that in vivo complement activation is required for aPL antibody-induced fetal loss and growth retardation.
Original languageEnglish
Article numberN/A
Pages (from-to)211-220
Number of pages10
JournalJournal of Experimental Medicine
Volume195
Issue number2
DOIs
Publication statusPublished - 21 Jan 2002

Keywords

  • Animals
  • Antibodies, Antiphospholipid
  • Antiphospholipid Syndrome
  • Complement Activation
  • Complement C3
  • Epitopes
  • Female
  • Fetal Death
  • Humans
  • Mice
  • Mice, Inbred BALB C
  • Mice, Knockout
  • Pregnancy

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