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Role of myeloid-derived suppressor cells in autoimmune disease
Author(s) -
Kristen R. Crook
Publication year - 2014
Publication title -
world journal of immunology
Language(s) - English
Resource type - Journals
ISSN - 2219-2824
DOI - 10.5411/wji.v4.i1.26
Subject(s) - myeloid derived suppressor cell , immunology , autoimmune disease , suppressor , disease , myeloid , t cell , cancer , medicine , autoimmunity , function (biology) , cancer research , biology , immune system , microbiology and biotechnology , antibody , pathology
Myeloid-derived suppressor cells (MDSCs) represent an important class of immunoregulatory cells that can be activated to suppress T cell functions. These MDSCs can inhibit T cell functions through cell surface interactions and the release of soluble mediators. MDSCs accumulate in the inflamed tissues and lymphoid organs of patients with autoimmune diseases. Much of our knowledge of MDSC function has come from studies involving cancer models, however many recent studies have helped to characterize MDSC involvement in autoimmune diseases. MDSCs are a heterogeneous group of immature myeloid cells with a number of different functions for the suppression of T cell responses. However, we have yet to fully understand their contributions to the development and regulation of autoimmune diseases. A number of studies have described beneficial functions of MDSCs during autoimmune diseases, and thus there appears to be a potential role for MDSCs in the treatment of these diseases. Nevertheless, many questions remain as to the activation, differentiation, and inhibitory functions of MDSCs. This review aims to summarize our current knowledge of MDSC subsets and suppressive functions in tissue-specific autoimmune disorders. We also describe the potential of MDSC-based cell therapy for the treatment of autoimmune diseases and note some of hurdles facing the implementation of this therapy.

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