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Updated: Oct 7, 2026

Mouse Models for Graft Arteriosclerosis
Published on: May 14, 2013
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
Abstract:
We studied the effect of host IFN-gamma on the pathology of acute rejection of vascularized mouse heart and kidney allografts. Organs from CBA donors (H-2k) were transplanted into BALB/c (H-2d) hosts with wild-type (WT) or disrupted (GKO, BALB/c mice with disrupted IFN-gamma genes) IFN-gamma genes. In WT hosts, rejecting hearts and kidneys showed mononuclear cell infiltration, intense induction of donor MHC products, but little parenchymal necrosis at day 7. Rejecting allografts in GKO recipients showed infiltrate but little or no induction of donor MHC and developed extensive necrosis despite patent large vessels. The necrosis was immunologically mediated, since it developed during rejection, was absent in isografts, and was prevented by immunosuppressing the recipient with cyclosporine or mycophenolate mofetil. Rejecting kidneys in GKO hosts showed increased mRNA for heme oxygenase 1, and decreased mRNA for NO synthase 2 and monokine inducible by IFN-gamma (MIG). The mRNA levels for CTL genes (perforin, granzyme B, and Fas ligand) were similar in rejecting kidneys in WT and GKO hosts, and the host Ab responses were similar. The administration of recombinant IFN-gamma to GKO hosts reduced but did not fully prevent the effects of IFN-gamma deficiency: MHC was induced, but the prevention of necrosis and induction of MIG were incomplete compared with WT hosts. Thus, IFN-gamma has unique effects in vascularized allografts, including induction of MHC and MIG, and protection against parenchymal necrosis, probably at the level of the microcirculation. This is probably a local action of IFN-gamma produced in large quantities in the allograft.
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.

