CD4 + T cells and complement independently mediate graft ischemia in the rejection of mouse orthotopic tracheal transplants

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Abstract

Rationale: While microvascular injury is associated with chronic rejection, the cause of tissue ischemia during alloimmune injury is not yet elucidated. Objective: We investigated the contribution of T lymphocytes and complement to microvascular injury-associated ischemia during acute rejection of mouse tracheal transplants. Methods and Results: Using novel techniques to assess microvascular integrity and function, we evaluated how lymphocyte subsets and complement specifically affect microvascular perfusion and tissue oxygenation in MHC-mismatched transplants. To characterize T cell effects on microvessel loss and recovery, we transplanted functional airway grafts in the presence and absence of CD4 + and CD8 + T cells. To establish the contribution of complement-mediated injury to the allograft microcirculation, we transplanted C3-deficient and C3-inhibited recipients. We demonstrated that CD4 + T cells and complement are independently sufficient to cause graft ischemia. CD8 + T cells were required for airway neovascularization to occur following CD4 +-mediated rejection. Activation of antibody-dependent complement pathways mediated tissue ischemia even in the absence of cellular rejection. Complement inhibition by CR2-Crry attenuated graft hypoxia, complement/antibody deposition on vascular endothelium and promoted vascular perfusion by enhanced angiogenesis. Finally, there was a clear relationship between the burden of tissue hypoxia (ischemia×time duration) and the development of subsequent airway remodeling. Conclusions: These studies demonstrated that CD4 + T cells and complement operate independently to cause transplant ischemia during acute rejection and that sustained ischemia is a precursor to chronic rejection. © 2011 American Heart Association, Inc.

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Khan, M. A., Jiang, X., Dhillon, G., Beilke, J., Holers, V. M., Atkinson, C., … Nicolls, M. R. (2011). CD4 + T cells and complement independently mediate graft ischemia in the rejection of mouse orthotopic tracheal transplants. Circulation Research, 109(11), 1290–1301. https://doi.org/10.1161/CIRCRESAHA.111.250167

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