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Increased Expression of Fas Antigen and Apoptosis in Aplastic Anemia Bone Marrow Cells  

Won, Jong-Ho (Department of Internal Medicine, SoonChunHyang University College of Medicine)
Lee, Nam-Su (Department of Internal Medicine, SoonChunHyang University College of Medicine)
Kim, Sook-Ja (Institute for Clinical Molecular Biology Research, SoonChunHyang University College of Medicine)
Cheong, Hee-Jeong (Institute for Clinical Molecular Biology Research, SoonChunHyang University College of Medicine)
Lee, Kyu-Taeg (Department of Internal Medicine, SoonChunHyang University College of Medicine)
Park, Seung-Kyu (Department of Internal Medicine, SoonChunHyang University College of Medicine)
Baick, Seung-Ho (Department of Internal Medicine, SoonChunHyang University College of Medicine)
Kim, Sung-Il (Hyunam Kidney Laboratory, SoonChunHyang University College of Medicine)
Hong, Dae-Sik (Department of Internal Medicine, SoonChunHyang University College of Medicine)
Park, Hee-Sook (Department of Internal Medicine, SoonChunHyang University College of Medicine)
Publication Information
IMMUNE NETWORK / v.2, no.1, 2002 , pp. 53-59 More about this Journal
Abstract
Background: Clinical observations and laboratory studies have supported an immune basis for most acquired aplastic anemias, with the majority of patients responding to immunosuppressive therapy. Fas, a member of the tumor necrosis factor (TNF) receptor superfamily is a critical downregulator of cellular immune responses. Proinflammatory cytokines like interferon gamma (IFN-${\gamma}$) and TNF-${\alpha}$ can induce Fas expression and render hematopoietic progenitor cells susceptible to Fas-induced growth suppression and apoptosis. Methods: In order to investigate the involvement of apoptosis in the pathogenesis of aplastic anemia (AA), we measured the expression of Fas antigen and caspase-3 on bone marrow (BM) mononuclear cells (MNCs) of AA in the presence or absence of IFN-${\gamma}$, TNF-${\alpha}$, or macrophage inflammatory protein 1-${\alpha}$ (MIP-$1{\alpha}$). Results: We confirmed that AA BM MNCs were more apoptotic and highly expressed Fas antigen than normal donors. Stimulation by IFN-${\gamma}$, TNF-${\alpha}$, or MIP-$1{\alpha}$ increased Fas antigen and caspase-3 expression in AA BM MNCs than BM MNCs of normal donors. Anti-Fas monoclonal antibody enhanced IFN-${\gamma}$, TNF-${\alpha}$, or MIP$1{\alpha}$ mediated caspase-3 expression in BM MNCs of normal donors. Among these three cytokines, IFN-${\gamma}$ enhanced apoptosis most strongly via Fas-caspase-3 pathway. Conclusion: These results suggest that Fas signal pathway may play a role in the pathophysiology of aplastic anemia and negative hematopoietic regulators like IFN-${\gamma}$ can induce apoptosis of bone marrow progenitors in part by Fas induction.
Keywords
Fas antigen; apoptosis; IFN-${\gamma}$; aplastic anemia;
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