Th17 cells, γδ T cells and their interplay in EAE and multiple sclerosis

被引:81
作者
McGinley, Aoife M. [1 ]
Edwards, Sarah C. [1 ]
Raverdeau, Mathilde [1 ]
Mills, Kingston H. G. [1 ]
机构
[1] Trinity Coll Dublin, Trinity Biomed Sci Inst, Sch Biochem & Immunol, Dublin 2, Ireland
基金
爱尔兰科学基金会;
关键词
IL-17; Th17; cell; gamma delta T cell; Experimental autoimmune; encephalomyelitis; Multiple sclerosis; CENTRAL-NERVOUS-SYSTEM; EXPERIMENTAL AUTOIMMUNE ENCEPHALOMYELITIS; CYTOKINE GM-CSF; T(H)17 CELLS; TGF-BETA; PERIPHERAL-BLOOD; IL-17; PRODUCTION; DOUBLE-BLIND; PHENOTYPIC CHARACTERIZATION; INTERLEUKIN-17;
D O I
10.1016/j.jaut.2018.01.001
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Experimental autoimmune encephalomyelitis (EAE) is an animal model of multiple sclerosis (MS) that shares many features with the human disease. This review will focus on the role of IL-17-secreting CD4 and gamma delta T cells in EAE and MS, the plasticity of Th17 cells in vivo and the application of these findings to the understating of the pathogenesis and the development of new treatments for MS. There is convincing evidence that IL-17-secreting CD4 Tcells (Th17 cells) and IL-17-secreting gamma delta Tcells play a critical pathogenic role in central nervous system (CNS) inflammation in EAE and MS. Indeed a significant number of the major discoveries on the pathogenic role of IL-17-secreting Tcells in autoimmunity were made in the EAE model. These included the first demonstration that IL-23-activated IL-17-secreting T cells are the key T cells in driving autoimmune disease pathology. Although the early studies on IL-17 focused on Th17 cells, it was later demonstrated that yE Tcells were an important early source of IL-17 and IL-21 that helped amplify IL-17 production by Th17 cells in autoimmune diseases. Furthermore, it emerged that Thl cells can also have encephalitogenic activity and that there was considerable plasticity in these Tcell responses, with Th17 cells reverting to a Th 1 phenotype in vivo. This questioned the pathogenic role of IL-17 and suggested that other cytokines, such as IFN-gamma, GM-CSF and TNF, may be important. Nevertheless, biological drugs that target the IL-23-IL-17 pathway are highly effective in treating human psoriasis and are showing promise in the treatment of relapsing remitting MS and other T-cell mediated autoimmune diseases. (C) 2018 Elsevier Ltd. All rights reserved.
引用
收藏
页码:97 / 108
页数:12
相关论文
共 187 条
[1]   Interleukin-23 promotes a distinct CD4 T cell activation state characterized by the production of interleukin-17 [J].
Aggarwal, S ;
Ghilardi, N ;
Xie, MH ;
de Sauvage, FJ ;
Gurney, AL .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (03) :1910-1914
[2]   Neutrophils Mediate Blood-Spinal Cord Barrier Disruption in Demyelinating Neuroinflammatory Diseases [J].
Aube, Benoit ;
Levesque, Sebastien A. ;
Pare, Alexandre ;
Chamma, Emilie ;
Kebir, Hania ;
Gorina, Roser ;
Lecuyer, Marc-Andre ;
Alvarez, Jorge I. ;
De Koninck, Yves ;
Engelhardt, Britta ;
Prat, Alexandre ;
Cote, Daniel ;
Lacroix, Steve .
JOURNAL OF IMMUNOLOGY, 2014, 193 (05) :2438-2454
[3]   Clonal expansions of CD8+ T cells dominate the T cell infiltrate in active multiple sclerosis lesions as shown by micromanipulation and single cell polymerase chain reaction [J].
Babbe, H ;
Roers, A ;
Waisman, A ;
Lassmann, H ;
Goebels, N ;
Hohlfeld, R ;
Friese, M ;
Schröder, R ;
Deckert, M ;
Schmidt, S ;
Ravid, R ;
Rajewsky, K .
JOURNAL OF EXPERIMENTAL MEDICINE, 2000, 192 (03) :393-404
[4]   Secukinumab, an Interleukin-17A Inhibitor, in Ankylosing Spondylitis [J].
Baeten, Dominique ;
Sieper, Joachim ;
Braun, Juergen ;
Baraliakos, Xenofon ;
Dougados, Maxime ;
Emery, Paul ;
Deodhar, Atul ;
Porter, Brian ;
Martin, Ruvie ;
Andersson, Mats ;
Mpofu, Shephard ;
Richards, Hanno B. .
NEW ENGLAND JOURNAL OF MEDICINE, 2015, 373 (26) :2534-2548
[5]   Polyfunctional, Pathogenic CD161+ Th17 Lineage Cells Are Resistant to Regulatory T Cell-Mediated Suppression in the Context of Autoimmunity [J].
Basdeo, Sharee A. ;
Moran, Barry ;
Cluxton, Deborah ;
Canavan, Mary ;
McCormick, Jennifer ;
Connolly, Mary ;
Orr, Carl ;
Mills, Kingston H. G. ;
Veale, Douglas J. ;
Fearon, Ursula ;
Fletcher, Jean M. .
JOURNAL OF IMMUNOLOGY, 2015, 195 (02) :528-540
[6]   Experimental autoimmune encephalitis and inflammation in the absence of interleukin-12 [J].
Becher, B ;
Durell, BG ;
Noelle, RJ .
JOURNAL OF CLINICAL INVESTIGATION, 2002, 110 (04) :493-497
[7]   Cytokine networks in neuroinflammation [J].
Becher, Burkhard ;
Spath, Sabine ;
Goverman, Joan .
NATURE REVIEWS IMMUNOLOGY, 2017, 17 (01) :49-59
[8]   Phenotypically activated γδ T lymphocytes in the peripheral blood of patients with tuberculosis [J].
Behr-Perst, SI ;
Munk, ME ;
Schaberg, T ;
Ulrichs, T ;
Schulz, RJ ;
Kaufmann, SHE .
JOURNAL OF INFECTIOUS DISEASES, 1999, 180 (01) :141-149
[9]   Reciprocal developmental pathways for the generation of pathogenic effector TH17 and regulatory T cells [J].
Bettelli, E ;
Carrier, YJ ;
Gao, WD ;
Korn, T ;
Strom, TB ;
Oukka, M ;
Weiner, HL ;
Kuchroo, VK .
NATURE, 2006, 441 (7090) :235-238
[10]   Encephalitogenic potential of the myelin basic protein peptide (amino acids 83-99) in multiple sclerosis: Results of a phase II clinical trial with an altered peptide ligand [J].
Bielekova, B ;
Goodwin, B ;
Richert, N ;
Cortese, I ;
Kondo, T ;
Afshar, G ;
Gran, B ;
Eaton, J ;
Antel, J ;
Frank, JA ;
McFarland, HF ;
Martin, R .
NATURE MEDICINE, 2000, 6 (10) :1167-1175