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More Stories on Th17 Cells

Overview
Journal Cell Res
Specialty Cell Biology
Date 2009 Mar 4
PMID 19255592
Citations 34
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Abstract

For more than two decades, immunologists have been using the so-called Th1/Th2 paradigm to explain most of the phenomena related to adaptive immunity. The Th1/Th2 paradigm implied the existence of two different, mutually regulated, CD4(+) T helper subsets: Th1 cells, driving cell-mediated immune responses involved in tissue damage and fighting infection against intracellular parasites; and Th2 cells that mediate IgE production and are particularly involved in eosinophilic inflammation, allergy and clearance of helminthic infections. A third member of the T helper set, IL-17-producing CD4(+) T cells, now called Th17 cells, was recently described as a distinct lineage that does not share developmental pathways with either Th1 or Th2 cells. The Th17 subset has been linked to autoimmune disorders, being able to produce IL-17, IL-17F and IL-21 among other inflammatory cytokines. Interestingly, it has been reported that there is not only a cross-regulation among Th1, Th2 and Th17 effector cells but there is also a dichotomy in the generation of Th17 and T regulatory cells. Therefore, Treg and Th17 effector cells arise in a mutually exclusive fashion, depending on whether they are activated in the presence of TGF-beta or TGF-beta plus inflammatory cytokines such as IL-6. This review will address the discovery of the Th17 cells, and recent progress on their development and regulation.

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References
1.
Zhang S, Rowlands C, Safe S . Ligand-dependent interactions of the Ah receptor with coactivators in a mammalian two-hybrid assay. Toxicol Appl Pharmacol. 2007; 227(2):196-206. PMC: 2288743. DOI: 10.1016/j.taap.2007.10.019. View

2.
Parish C . Immune response to chemically modified flagellin. I. Induction of antibody tolerance to flagellin by acetoacetylated derivatives of the protein. J Exp Med. 1971; 134(1):1-20. PMC: 2139033. DOI: 10.1084/jem.134.1.1. View

3.
Raffatellu M, Santos R, Verhoeven D, George M, Wilson R, Winter S . Simian immunodeficiency virus-induced mucosal interleukin-17 deficiency promotes Salmonella dissemination from the gut. Nat Med. 2008; 14(4):421-8. PMC: 2901863. DOI: 10.1038/nm1743. View

4.
Xiao S, Jin H, Korn T, Liu S, Oukka M, Lim B . Retinoic acid increases Foxp3+ regulatory T cells and inhibits development of Th17 cells by enhancing TGF-beta-driven Smad3 signaling and inhibiting IL-6 and IL-23 receptor expression. J Immunol. 2008; 181(4):2277-84. PMC: 2722959. DOI: 10.4049/jimmunol.181.4.2277. View

5.
Evans H, Suddason T, Jackson I, Taams L, Lord G . Optimal induction of T helper 17 cells in humans requires T cell receptor ligation in the context of Toll-like receptor-activated monocytes. Proc Natl Acad Sci U S A. 2007; 104(43):17034-9. PMC: 2040448. DOI: 10.1073/pnas.0708426104. View