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The role of T helper 17 (Th17) and regulatory T cells (Treg) in human organ transplantation and autoimmune disease

Afzali B, Lombardi G, Lechler R +1 more2007Clinical & Experimental ImmunologyReview
10.1111/j.1365-2249.2007.03356.xPubMedFree full text
Immune/Innate

Abstract

SummaryUncommitted (naive) murine CD4+ T helper cells (Thp) can be induced to differentiate towards T helper 1 (Th1), Th2, Th17 and regulatory (Treg) phenotypes according to the local cytokine milieu. This can be demonstrated most readily both in vitro and in vivo in murine CD4+ T cells. The presence of interleukin (IL)-12 [signalling through signal transduction and activator of transcription (STAT)-4] skews towards Th1, IL-4 (signalling through STAT-6) towards Th2, transforming growth factor (TGF)-β towards Treg and IL-6 and TGF-β towards Th17. The committed cells are characterized by expression of specific transcription factors, T-bet for Th1, GATA-3 for Th2, forkhead box P3 (FoxP3) for Tregs and RORγt for Th17 cells. Recently, it has been demonstrated that the skewing of murine Thp towards Th17 and Treg is mutually exclusive. Although human Thp can also be skewed towards Th1 and Th2 phenotypes there is as yet no direct evidence for the existence of discrete Th17 cells in humans nor of mutually antagonistic development of Th17 cells and Tregs. There is considerable evidence, however, both in humans and in mice for the importance of interferon (IFN)-γ and IL-17 in the development and progression of inflammatory and autoimmune diseases (AD). Unexpectedly, some models of autoimmunity thought traditionally to be solely Th1-dependent have been demonstrated subsequently to have a non-redundant requirement for Th17 cells, notably experimental allergic encephalomyelitis and collagen-induced arthritis. In contrast, Tregs have anti-inflammatory properties and can cause quiescence of autoimmune diseases and prolongation of transplant function. As a result, it can be proposed that skewing of responses towards Th17 or Th1 and away from Treg may be responsible for the development and/or progression of AD or acute transplant rejection in humans. Blocking critical cytokines in vivo, notably IL-6, may result in a shift from a Th17 towards a regulatory phenotype and induce quiescence of AD or prevent transplant rejection. In this paper we review Th17/IL-17 and Treg biology and expand on this hypothesis.

Key Biomarkers

Foxp3GATA-3IFN-γIL-12IL-17IL-4IL-6RORγtSTAT-4STAT-6T-betTGF-beta

Symptom Clusters

Autoimmune diseaseInflammationTransplant rejection

Cited By (6)

  • The T helper type 17/regulatory T cell imbalance in patients with acute Kawasaki diseaseClinical & Experimental Immunology · 2010
  • Effects of leukotriene B4 and prostaglandin E2 on the differentiation of murine Foxp3+ T regulatory cells and Th17 cellsProstaglandins Leukotrienes and Essential Fatty Acids · 2009
  • Combined treatment of etanercept and MTX reverses Th1/Th2, Th17/Treg imbalance in patients with rheumatoid arthritisJournal of Clinical Immunology · 2011
  • Translational mini-review series on Th17 cells: induction of interleukin-17 production by regulatory T cellsClinical & Experimental Immunology · 2010
  • Differential Regulation of the IL-17 Receptor by γc CytokinesJournal of Biological Chemistry · 2008
  • The T helper 17-regulatory T cell axis in transplant rejection and toleranceCurrent Opinion in Organ Transplantation · 2009

References (4)

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