CD4+ T cells initiate pancreatic islet xenograft rejection via an interferon-gamma-dependent recruitment of macrophages and natural killer cells.
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Summary
It is demonstrated that CD4+ T cell-dependent cellular xenograft rejection was a result of macrophage and natural killer cell accumulation and activation, but was not mediated by eosinophils.
- Type
- article
- Published
- 2002-02-15
- Cited by
- 45
- References
- 46
- OpenAlex
- https://openalex.org/W1974120320
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:33973677
Keywords
Islet, Interferon, Cancer research, Transplantation, Immunology
References
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- Natural killer cells in xenotransplantation
- CD4+ T cells, without CD8+ or B lymphocytes, can reject xenogeneic skin grafts
- Apoptosis detection by annexin V binding: a novel method for the quantitation of cell-mediated cytotoxicity.
- Cellular rejection in discordant xenografts when hyperacute rejection is prevented: analysis using adoptive and passive transfer.
- Expression of intercellular adhesion molecule-1 on macrophages in vitro as a marker of activation.
- Xenogeneic skin graft rejection is especially dependent on CD4+ T cells
- Comparative analysis of B7-1 and B7-2 costimulatory ligands: expression and function
- Delayed xenograft rejection.
- Immunology of xenograft rejection.
- Macrophage activation and innate resistance to infection in SCID mice.
- EVIDENCE FOR EARLY Th 2 T CELL PREDOMINANCE IN XENOREACTIVITY
- Observations regarding the effect of targeted gene deletions (knockouts) on graft rejection.
- The cytokine and histological response in islet xenograft rejection is dependent upon species combination.
- NKT cells are phenotypically and functionally diverse
Cited by
- Immunological challenges and therapies in xenotransplantation.
- Studies of Innate and Adaptive Immunity in Islet Transplantation
- Immunadsorption bei der heterotopen und orthotopen Xenotransplantation von Pavianen, Cynomolgus- und Rhesusaffen mit Landrasse- und hDAF-transgenen Schweineherzen
- Xenoreactive CD4+ memory T cells resist inhibition by anti‐CD44 mAb and reject islet grafts via a Th2‐dependent pathway
- CD4 T-cells Mediate Cardiac Xenograft Rejection via Host MHC class II
- Chemokine and toll‐like receptor signaling in macrophage mediated islet xenograft rejection
- Xenogeneic transplantation of porcine islets: an overview
- Prevention of primary non-function of islet xenografts in autoimmune diabetic NOD mice by anti-inflammatory agents
- Transient transmission of porcine endogenous retrovirus to fetal lambs after pig islet tissue xenotransplantation
- Role of CD4+ and CD8+ T cells in the rejection of heart or islet xenografts in recipients with xenotolerance in the innate immune compartment.
- Pathogenesis and pathology of different types of xenotransplant rejection
- Transplantation of Xenogeneic Islets: Are We There Yet?
- Xenotransplantation: immunological hurdles and progress toward tolerance
- IFN‐γ but not IL‐4 is important for mouse CD4+ T cell‐mediated macrophage activation following their exposure to pig cells in vitro
- Islet xenotransplantation: progress towards a clinical therapy
- Transgenic expression of HLA‐E single chain trimer protects porcine endothelial cells against human natural killer cell‐mediated cytotoxicity
- Role of regulatory T cells in xenotransplantation
- The immunological barriers to xenotransplantation.
- Reversal of diabetes in non‐immunosuppressed rhesus macaques by intraportal porcine islet xenografts precedes acute cellular rejection
- Immune mechanisms associated with the rejection of encapsulated neonatal porcine islet xenografts
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