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Interleukin 2 (IL-2, aldesleukin) was discovered as a T cell growth factor more than 30 years ago. IL-2 was the first human cytokine used therapeutically. IL-2 induces antigen specific T cells, and two important lymphocyte subsets: regulatory T cells (T-regs) and natural killer cells (NK) cells. T-regs have a critical role in self-tolerance and pathogenesis of autoimmune disease or graft versus host disease (GVHD), and they have been extensively studied in solid tumors, hematologic malignancies, viral hepatitis, and HIV infections. NK cells have a unique role in bridging innate and adaptive immunity. NK cells facilitate hematopoietic stem cell (HSC) engraftment reduce GVHD and increase graft-versus-leukemia (GVL) effects. NK cells have important roles on pathogenesis of malignancies, autoimmune disease and AIDS. Conventional dose IL-2 treatment promotes marked expansion of regulatory T cells, and NK cells but is associated with significant side effects. However, much lower doses of interleukin-2 (0.5- 1MIU/m2/day) which lack significant side effects, also induce expansion of T regs and NK cells. These observations suggest that ultra low dose IL-2 would be safe and appropriate to give to hematopoietic stem cell donors. The quality of the transplant would be improved because the higher dose of T-regs would reduce the risk of GVHD while the higher NK cells would augment the GVL effect. The aim of this study is to evaluate the safety and the tolerability of ultra low dose IL-2 in healthy volunteer for preferential expansion of T-regs and NK cells with a view to extending ultra low dose IL-2 administration to stem cell donors. We anticipate that this study will provide valuable information on the biology of IL-2 on the human immunome applicable to various human disease conditions, including cancer, immunodeficiency disease, autoimmune disease, and hematopoietic stem cell transplantation. The proposed IL-2 dose is 2-3 logs lower than the manufacturer s recommended dose. We therefore expect that the dose used in this protocol will be well tolerated. Nevertheless, because there is little information on the tolerability and safety of IL-2 at these ultra low doses, we have structured this study as a safety protocol with stopping rules for unacceptable side effects. This is important because we hope to use the safety data generated to justify a future protocol giving ultra low dose IL-2 to stem cell donors.
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22 participants in 2 patient groups
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