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Lung CD103+ dendritic cells restrain allergic airway inflammation through IL-12 production
Laura Conejero, Sofía C. Khouili, Sarai Martínez-Cano, Helena M. Izquierdo, Paola Brandi, David Sancho
Laura Conejero, Sofía C. Khouili, Sarai Martínez-Cano, Helena M. Izquierdo, Paola Brandi, David Sancho
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Research Article Immunology Inflammation

Lung CD103+ dendritic cells restrain allergic airway inflammation through IL-12 production

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Abstract

DCs are necessary and sufficient for induction of allergic airway inflammation. CD11b+ DCs direct the underlying Th2 immunity, but debate surrounds the function of CD103+ DCs in lung immunity and asthma after an allergic challenge. We challenged Batf3–/– mice, which lacked lung CD103+ DCs, with the relevant allergen house dust mite (HDM) as a model to ascertain their role in asthma. We show that acute and chronic HDM exposure leads to defective Th1 immunity in Batf3-deficient mice. In addition, chronic HDM challenge in Batf3–/– mice results in increased Th2 and Th17 immune responses and exacerbated airway inflammation. Mechanistically, Batf3 absence does not affect induction of Treg or IL-10 production by lung CD4+ T cells following acute HDM challenge. Batf3-dependent CD103+ migratory DCs are the main source of IL-12p40 in the mediastinal lymph node DC compartment in the steady state. Moreover, CD103+ DCs selectively increase their IL-12p40 production upon HDM administration. In vivo IL-12 treatment reverts exacerbated allergic airway inflammation upon chronic HDM challenge in Batf3–/– mice, restraining Th2 and Th17 responses without triggering Th1 immunity. These results suggest a protective role for lung CD103+ DCs to HDM allergic airway inflammation through the production of IL-12.

Authors

Laura Conejero, Sofía C. Khouili, Sarai Martínez-Cano, Helena M. Izquierdo, Paola Brandi, David Sancho

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Figure 7

CD103+ mig-DCs are the main DC source of IL-12 in mLNs after HDM exposure.

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CD103+ mig-DCs are the main DC source of IL-12 in mLNs after HDM exposur...
Mice were challenged with 100 μg HDM i.n., and mLNs were collected 3 days later. (A) IL-12p40 and (B) IL-6 mRNA expression was analyzed in purified CD11c+ cells, and mRNA was normalized against β-actin. Data shown (mean ± SEM) is a pool of 3 independent experiments; each symbol represents 1 experiment (5–10 mice pooled per experiment); **P < 0.01, 2-tailed Student’s t test. (C–E) mLN cells were stained for CD11c, MHC class II, CD103, CD11b, and intracellular IL-12p40. (C) Numbers of IL-12p40–producing cells in the mLN CD11c+MHCIIhi fraction. (D) Representative plots showing IL-12p40 staining in CD103+ and CD11b+ mig-DCs. (E) Frequencies (left) and numbers (right) of IL-12p40–producing mig-DC subsets. (C and E) Individual data and mean ± SEM from a representative independent experiment of 3 performed (n = 4 PBS, n = 7 HDM); **P < 0.01, ***P < 0.001, 1-way ANOVA followed by Bonferroni’s post-test (C) and Mann Whitney U test (A and E). HDM, house dust mite; mLN, mediastinal lymph node.

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