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A neutrophil/TGF-β axis limits the pathogenicity of allergen-specific CD4+ T cells
Gregory S. Whitehead, Seddon Y. Thomas, Keiko Nakano, Derek J. Royer, Catherine G. Burke, Hideki Nakano, Donald N. Cook
Gregory S. Whitehead, Seddon Y. Thomas, Keiko Nakano, Derek J. Royer, Catherine G. Burke, Hideki Nakano, Donald N. Cook
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Research Article Immunology Inflammation

A neutrophil/TGF-β axis limits the pathogenicity of allergen-specific CD4+ T cells

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Abstract

The intensity and longevity of inflammatory responses to inhaled allergens is determined largely by the balance between effector and regulatory immune responses, but the mechanisms that determine the relative magnitudes of these opposing forces remain poorly understood. We have found that the type of adjuvant used during allergic sensitization has a profound effect on both the nature and longevity of the pulmonary inflammation triggered by subsequent reexposure to that same provoking allergen. TLR ligand adjuvants and house dust extracts primed immune responses characterized by a mixed neutrophilic and eosinophilic inflammation that was suppressed by multiple daily allergen challenges. During TLR ligand–mediated allergic sensitization, mice displayed transient airway neutrophilia, which triggered the release of TGF-β into the airway. This neutrophil-dependent production of TGF-β during sensitization had a delayed, suppressive effect on eosinophilic responses to subsequent allergen challenge. Neutrophil depletion during sensitization did not affect numbers of Foxp3+ Tregs but increased proportions of Gata3+CD4+ T cells, which, upon their transfer to recipient mice, triggered stronger eosinophilic inflammation. Thus, a neutrophil/TGF-β axis acts during TLR-mediated allergic sensitization to fine-tune the phenotype of developing allergen-specific CD4+ T cells and limit their pathogenicity, suggesting a novel immunotherapeutic approach to control eosinophilia in asthma.

Authors

Gregory S. Whitehead, Seddon Y. Thomas, Keiko Nakano, Derek J. Royer, Catherine G. Burke, Hideki Nakano, Donald N. Cook

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Figure 3

Airway neutrophilia during allergic sensitization curtails subsequent asthma-like responses to allergen challenge.

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Airway neutrophilia during allergic sensitization curtails subsequent as...
(A) Acute inflammatory responses to inhaled LPS/OVA and ASP/OVA. Shown are mean cell numbers ± SEM for the indicated leukocytes in BAL fluid of mice 16 hours after inhalation (n = 4 mice/group). (B) Efficiency of 1A8 Ab–mediated neutrophil depletion in mice inhaling OVA together with the indicated amounts of LPS (n = 8 mice/group). (A and B) Data shown are from single experiments, representative of 2. (C) Timeline for neutrophil depletion, followed by LPS/OVA sensitizations and a single OVA challenge. (D) Cell numbers for the indicated leukocytes in BAL fluid 2 days after OVA challenge, as shown in C. Values shown represent mean ± SEM, and the data are combined from 2 experiments (n = 12 mice/group). (E–G) Effect of neutrophil depletion on responses to multiple OVA challenges. (E) Timeline for neutrophil depletion, allergic sensitization, and multiple OVA challenges. (F) Cell numbers for the indicated leukocytes in BAL fluid 2 days after the last of 6 OVA challenges, as shown in E. Values shown represent mean ± SEM, and the data are combined from 3 experiments (n = 18 mice/group). (G) Effect of neutrophil depletion prior to LPS/OVA-mediated sensitization on AHR. Airway resistance values shown represent mean ± SEM and are combined from 2 experiments (n = 17 mice/group). (H) Effect of neutrophil depletion prior to HDE/OVA sensitization. Cell numbers for the indicated leukocytes in BAL fluid of OVA-challenged mice previously sensitized using HDE/OVA as depicted in Figure 2H. Values shown represent mean ± SEM from 1 of 2 experiments yielding similar results (n = 6 mice/group). *P < 0.05, **P < 0.01, ***P < 0.001; 1-way ANOVA with Holm-Šídák multiple-comparison test.

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