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TNF-alpha impairs peripheral tolerance towards beta-cells,and local costimulation by B7.1 enhances the effector function of diabetogenic T cells
Authors:Skak Kresten  Guerder Sylvie  Picarella Dominic E  Brenden Nina  Flavell Richard A  Michelsen Birgitte K
Institution:Department of Diabetes Autoimmunity, Hagedorn Research Institute, Gentofte, Denmark. skak@novonordisk.com
Abstract:Maintenance of peripheral tolerance and inactivation of autoreactive T cells is based on a delicate balance between pro-inflammatory and protective cytokines that is poorly understood. We have here addressed how the local expression of the inflammatory cytokine TNF-alpha can impair peripheral tolerance and lead to autoreactivity. After transplantation of pancreata that are immunogenic due to beta-cell expression of B7.1 and TNF-alpha, into thymectomized and euthymic syngeneic mice, we found that only euthymic mice rejected the grafts. This result suggests that under normal circumstances autoreactive T cells are functionally inactivated, and initiation of an autoreactive response requires de-novo generation of T cells. By contrast, thymectomized mice expressing TNF-alpha on the endogenous islets rejected the grafts, showing that expression of TNF-alpha prevents functional silencing of the autoreactive T cells. Thus, this study provides a mechanism by which TNF-alpha and possibly chronic inflammatory responses may promote autoimmune diseases. Furthermore, we have investigated whether B7.1 can enhance T cell responses of already activated T cells leading to islet rejection. By transplantation of wild-type and B7.1-expressing islets into overtly diabetic mice we found that only the wild-type islets could restore normoglycemia, suggesting that costimulation by B7.1 is required in the expansion or effector phase of the response.
Keywords:Rodent  Diabetes  Costimulation  T lymphocyte  Tolerance
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