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Requisite Role for the Dectin-1 β-Glucan Receptor in Pulmonary Defense against Aspergillus fumigatus

Werner J, Metz A, Horn D +6 more2009The Journal of ImmunologyJournal Article
10.4049/jimmunol.0804250PubMedFree full text
Immune/InnateRespiratory/Sinus
Beta-GlucansIndoor Mold (Stachybotrys, Aspergillus, etc.)

Abstract

Immune suppression increases the incidence of invasive fungal infections, particularly those caused by the opportunistic mold Aspergillus fumigatus. Previous investigations revealed that members of the TLR family are not absolutely required for host defense against A. fumigatus in nonimmunosuppressed hosts, suggesting that other pattern recognition receptors are involved. We show in this study that naive mice (i.e., not pharmacologically immunosuppressed) lacking the beta-glucan receptor Dectin-1 (Dectin-1(-/-)) are more sensitive to intratracheal challenge with A. fumigatus than control mice, exhibiting >80% mortality within 5 days, ultimately attributed to a compromise in respiratory mechanics. In response to A. fumigatus challenge, Dectin-1(-/-) mice demonstrated impaired IL-1alpha, IL-1beta, TNF-alpha, CCL3/MIP-1alpha, CCL4/MIP-1beta, and CXCL1/KC production, which resulted in insufficient lung neutrophil recruitment and uncontrolled A. fumigatus lung growth. Alveolar macrophages from Dectin-1(-/-) mice failed to produce proinflammatory mediators in response to A. fumigatus, whereas neutrophils from Dectin-1(-/-) mice had impaired reactive oxygen species production and impaired killing of A. fumigatus. We further show that IL-17 production in the lung after A. fumigatus challenge was Dectin-1 dependent, and that neutralization of IL-17 significantly impaired A. fumigatus clearance. Collectively, these results support a requisite role for Dectin-1 in in vivo defense against A. fumigatus.

Key Biomarkers

CCL3/MIP-1alphaCCL4/MIP-1βCXCL1/KCDectin-1IL-17IL-1αIL-1βReactive Oxygen Species (ROS)TNF-α

Symptom Clusters

Compromised pulmonary defenseImpaired respiratory mechanicsInsufficient neutrophil recruitmentUncontrolled fungal growth in lungs

Cited By (11)

  • Generation of IL-23 producing dendritic cells (DCs) by airborne fungi regulates fungal pathogenicity via the induction of TH-17 responsesPLoS ONE · 2010
  • Neutrophils Produce Interleukin 17A (IL-17A) in a Dectin-1- and IL-23-Dependent Manner during Invasive Fungal InfectionInfection and Immunity · 2011
  • Dectin-1 diversifies Aspergillus fumigatus–specific T cell responses by inhibiting T helper type 1 CD4 T cell differentiationThe Journal of Experimental Medicine · 2011
  • Dectin-1-dependent interleukin-22 contributes to early innate lung defense against Aspergillus fumigatusInfection and Immunity · 2012
  • Mold, Mycotoxins and a Dysregulated Immune System: A Combination of Concern?International Journal of Molecular Sciences · 2021
  • β‐glucan recognition by the innate immune systemImmunological Reviews · 2009
  • Dectin-1 and Dectin-2 in innate immunity against fungi

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  • References (3)

    • MyD88 Signaling Contributes to Early Pulmonary Responses toAspergillus fumigatusInfection and Immunity · 2008
    • Aspergillus fumigatus Induces Innate Immune Responses in Alveolar Macrophages through the MAPK Pathway Independently of TLR2 and TLR4The Journal of Immunology · 2006
    • Th17 cells and mucosal host defenseSeminars in Immunology · 2007