Human Th17 cells

被引:0
作者
Sergio Romagnani
机构
[1] University of Florence,Department of Internal Medicine
来源
Arthritis Research & Therapy | / 10卷
关键词
Th17 Cell; Experimental Autoimmune Encephalomyelitis; Treg Cell; Th17 Differentiation; Developmental Relationship;
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摘要
The discovery in mice of a new lineage of CD4+ effector T helper (Th) cells that selectively produce IL-17 has provided exciting new insights into immune regulation, host defence, and the pathogenesis of autoimmune and other chronic inflammatory disorders. This population of CD4+ Th cells, which has been termed 'Th17', indeed plays an apparently critical role in the pathogenesis of some murine models of autoimmunity. Interestingly, murine Th17 cells share a common origin with Foxp3+ T regulatory cells, because both populations are produced in response to transforming growth factor-β, but they develop into Th17 cells only when IL-6 is simultaneously produced. Initial studies in humans have confirmed the existence of Th17 cells, but they have shown that the origin of these cells in humans differs from that in mice, with IL-1β and IL-23 being the major cytokines responsible for their development. Moreover, the presence in the circulation and in various tissues of Th cells that can produce both IL-17 and interferon-γ, as well as the flexibility of human Th17 clones to produce interferon-γ in addition to IL-17 in response to IL-12, suggests that there may be a developmental relationship between Th17 and Th1 cells, at least in humans. Resolving this issue has great implications in tems of establishing the respective pathogenic roles of Th1 and Th17 cells in autoimmune disorders. In contrast, it is unlikely that Th17 cells contribute to the pathogenesis of human allergic IgE-mediated disorders, because IL-4 and IL-25 (a powerful inducer of IL-4) are both potent inhibitors of Th17 cell development.
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[1]  
Mosmann TR(1986)Two types of murine helper T cell clones. I. Definition according to profiles of lymphokine activities and secreted proteins J Immunol 136 2348-2357
[2]  
Cherwinski C(1991)Purified protein derivative of Mycobacterium tuberculosis and excretory/secretori antigen(s) of J Clin Invest 88 346-350
[3]  
Bond MW(1996)expand in vitro human T cells with stable and opposite (type 1 T helper or type 2 T helper) profile of cytokine production Nature 383 787-793
[4]  
Giedlin MA(1997)Functional diversity of helper T lymphocytes Immunol Today 18 263-266
[5]  
Coffman RL(2000)The Th1/Th2 paradigm Immunol Today 21 479-483
[6]  
Del Prete GF(2006)Transcriptional regulation of Th1/Th2 polarization Immunity 24 677-688
[7]  
De Carli M(1993)Th17 and effector CD4 T cell lineage with regulatory T cell ties J Exp Med 177 1199-1204
[8]  
Mastromauro C(2004)Natural killer cell stimulatory factor (interleukin 12 [IL-12]) induces T helper type 1 (Th1)-specific immune responses and inhibits the development of IL-4-producing Th cells Cell 117 515-526
[9]  
Biagiotti R(2006)Instruction of distinct CD4 T helper cell fates by different notch ligands on antigen-presenting cells J Exp Med 203 1105-1116
[10]  
Macchia D(2007)Identification of an interleukin (IL)-25-dependent cell population that provides IL-4, IL-5, and IL-13 at the onset of helminth expulsion J Exp Med 204 1509-1517