IFN-gamma alters the pathology of graft rejection: protection from early necrosis

P F Halloran1, L W Miller, J Urmson

  • 1Departments of. Medicine, Surgery, and Laboratory Medicine and Anatomical Pathology, University of Alberta, Edmonton, Alberta, Canada. phil.halloran@ualberta.ca

Insights

Host interferon-gamma (IFN-gamma) plays a crucial role in preventing tissue damage during acute allograft rejection. Disrupting IFN-gamma leads to severe necrosis in transplanted organs, highlighting its protective function in vascularized transplants.

Area of Science:

  • Immunology
  • Transplantation Biology
  • Pathology

Background:

  • Acute rejection of vascularized allografts is a significant clinical challenge.
  • The role of host interferon-gamma (IFN-gamma) in mediating transplant pathology is not fully understood.

Purpose of the Study:

  • To investigate the specific effects of host IFN-gamma on the pathology of acute rejection in vascularized mouse heart and kidney allografts.

Main Methods:

  • Transplantation of CBA donor organs into BALB/c hosts with wild-type (WT) or disrupted (GKO) IFN-gamma genes.
  • Analysis of allograft pathology, including cellular infiltration, donor MHC expression, parenchymal necrosis, and gene expression (heme oxygenase 1, NO synthase 2, MIG, CTL genes).
  • Assessment of host antibody responses and the effects of recombinant IFN-gamma administration in GKO hosts.

Main Results:

  • WT hosts showed mononuclear infiltration and donor MHC induction with minimal necrosis.
  • GKO hosts exhibited extensive parenchymal necrosis despite infiltrate, with little donor MHC induction.
  • Necrosis in GKO hosts was immunologically mediated and prevented by immunosuppression.
  • IFN-gamma deficiency in GKO hosts led to increased heme oxygenase 1 and decreased NO synthase 2 and MIG mRNA.
  • Recombinant IFN-gamma partially restored MHC induction and necrosis prevention in GKO hosts.

Conclusions:

  • Host IFN-gamma has unique protective effects in vascularized allografts, including MHC and MIG induction.
  • IFN-gamma protects against parenchymal necrosis, likely via local action in the microcirculation.
  • These findings underscore the critical role of IFN-gamma in modulating allograft rejection outcomes.