IL-17 and therapeutic kynurenines in pathogenic inflammation to fungi
Abstract
Abstract Largely viewed as proinflammatory, innate responses combine with adaptive immunity to generate the most effective form of antifungal resistance, and T cells exercise feedback control over diverse effects of inflammation on infection. Some degree of inflammation is required for protection, particularly in mucosal tissues, during the transitional response occurring between the rapid innate and slower adaptive response. However, progressive inflammation worsens disease and ultimately prevents pathogen eradication. IDO, tryptophan catabolites (“kynurenines”), and regulatory T cells help to tame overzealous and exaggerated inflammatory responses. In this context, IL-23 and the Th17 pathway, which down-regulate tryptophan catabolism, may instead favor pathology and serve to accommodate the seemingly paradoxical association of chronic inflammation with fungal persistence. Recent data support a view in which IL-23/IL-17 antagonistic strategies, including the administration of synthetic kynurenines, could represent a new means of harnessing progressive or potentially harmful inflammation.
Cited By (3)
- The biocontaminants and complexity of damp indoor spaces: more than what meets the eyesToxicology and Industrial Health · 2009
- Anti‐Aspergillus human host defence relies on type 1 T helper (Th1), rather than type 17 T helper (Th17), cellular immunityImmunology · 2010
- Interplay between effector Th17 and regulatory T cellsJournal of Clinical Immunology · 2008
References (7)
- Th-17 cells in the circle of immunity and autoimmunityNature Immunology · 2007
- IL-21 initiates an alternative pathway to induce proinflammatory TH17 cellsNature · 2007
- The contribution of PARs to inflammation and immunity to fungiMucosal Immunology · 2008
- The interface between innate and adaptive immunity
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