Th17 cells: effector T cells with inflammatory properties
Abstract
Upon activation, naïve CD4+ T cells differentiate into effector T cells with specific effector functions and cytokine profiles. The Th1/Th2 paradigm has recently been reevaluated to include a third population of T helper cells, producing IL-17 and designated Th17. The differentiation of Th17 cells requires the coordinate and specific action of the proinflammatory cytokine IL-6 and the immunosuppressive cytokine TGF-β. In addition, the IL-12 family member IL-23 is involved in the maintenance of these cells. Analogous to other T helper cell subsets, Th17 commitment is initiated by sequential involvement of STAT molecules, i. e. STAT3 downstream of cytokine receptors, and specific transcription factors, i. e. ROR-γt. Recent data also support the existence of a complex network of cytokines regulating Th17 cells. Clearly, the specific effector functions of Th17 cells expand beyond previously described effects of Th1 and Th2 immunity, with specific roles in host defense against certain pathogens and in organ specific autoimmunity. The potential dynamics of Th17 cell populations and their interplay with other inflammatory cells in the induction of tissue inflammation in host defense and organ-specific autoimmunity are discussed.
Key Biomarkers
Symptom Clusters
Cited By (8)
- The biocontaminants and complexity of damp indoor spaces: more than what meets the eyesToxicology and Industrial Health · 2009
- New insights into the role of VIP on the ratio of T-cell subsets during the development of autoimmune diabetesImmunology and Cell Biology · 2010
- Retinoid-related orphan receptors (RORs): critical roles in development, immunity, circadian rhythm, and cellular metabolismNuclear Receptor Signaling · 2009
- Immunological basis for the development of tissue inflammation and organ-specific autoimmunity in animal models of multiple sclerosisResults and problems in cell differentiation · 2010
- Glatiramer Acetate in the Treatment of Multiple SclerosisCNS Drugs · 2011
- Enforced ROR (gamma)t expression in haematopoietic stem cells increases regulatory T cell number, which reduces immunoreactivity and attenuates hypersensitivity in vivoPubMed · 2011
- Vasoactive Intestinal Peptide–Mediated Th17 Differentiation
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