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CFTR negatively reprograms Th2 cell responses, and CFTR potentiation restrains allergic airway inflammation
Mark Rusznak, Christopher M. Thomas, Jian Zhang, Shinji Toki, Weisong Zhou, Masako Abney, Danielle M. Yanda, Allison E. Norlander, Craig A. Hodges, Dawn C. Newcomb, Mark H. Kaplan, R. Stokes Peebles Jr., Daniel P. Cook
Mark Rusznak, Christopher M. Thomas, Jian Zhang, Shinji Toki, Weisong Zhou, Masako Abney, Danielle M. Yanda, Allison E. Norlander, Craig A. Hodges, Dawn C. Newcomb, Mark H. Kaplan, R. Stokes Peebles Jr., Daniel P. Cook
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Research Article Immunology Inflammation Pulmonology

CFTR negatively reprograms Th2 cell responses, and CFTR potentiation restrains allergic airway inflammation

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Abstract

Type 2 inflammatory diseases, including asthma, sinusitis, and allergic bronchopulmonary aspergillosis, are common in cystic fibrosis (CF). CD4+ Th2 cells promote these diseases through secretion of IL-4, IL-5, and IL-13. Whether the CF transmembrane conductance regulator (CFTR), the mutated protein in CF, has a direct effect on Th2 development is unknown. Using murine models of CFTR deficiency and human CD4+ T cells, we show that CD4+ T cells expressed Cftr transcript and CFTR protein following activation. Loss of T cell CFTR expression increased Th2 cytokine production compared with control cells. Mice with CFTR-deficient T cells developed increased allergic airway disease to Alternaria alternata extract compared with control mice. Culture of CFTR-deficient Th2 cells demonstrated increased IL-4Rα expression and increased sensitivity to IL-4 with greater induction of GATA3 and IL-13 compared with control Th2 cell cultures. The CFTR potentiator ivacaftor reduced allergic inflammation and type 2 cytokine secretion in bronchoalveolar lavage of humanized CFTR mice following Alternaria alternata extract challenge and decreased Th2 development in human T cell culture. These data support a direct role of CFTR in regulating T cell sensitivity to IL-4 and demonstrate a potential CFTR-specific therapeutic strategy for Th2 cell–mediated allergic disease.

Authors

Mark Rusznak, Christopher M. Thomas, Jian Zhang, Shinji Toki, Weisong Zhou, Masako Abney, Danielle M. Yanda, Allison E. Norlander, Craig A. Hodges, Dawn C. Newcomb, Mark H. Kaplan, R. Stokes Peebles Jr., Daniel P. Cook

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Figure 3

CD4+ T cell–specific CFTR deficiency increases Alternaria extract–induced (AE-induced) allergic inflammation.

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CD4+ T cell–specific CFTR deficiency increases Alternaria extract–induce...
(A) Schematic diagram showing adaptive model of intranasal AE-induced airway inflammation in CD4Cre−Cftrfl/fl and CD4Cre+Cftrfl/fl mice. (B) IgE concentrations by ELISA in serum from treated mice (n = 4–5 depending on genotype and condition). (C–F) The number of macrophages (C), neutrophils (D), eosinophils (E), and lymphocytes (F) in the BALF of PBS- or AE-challenged mice (n = 4–5 per genotype and condition). (G and H) IL-5 and IL-13 by ELISA in BAL from CD4Cre−Cftrfl/fl and CD4Cre+Cftrfl/fl mice treated with either AE or PBS control (n = 4–5 per genotype and condition). Open circles represent AE sensitized and challenged mice, and closed circles denote PBS control mice. Black circles denote CD4Cre−Cftrfl/fl and red circles indicate CD4Cre+Cftrfl/fl mice. Statistical analysis in B–H were done by 1-way ANOVA followed by Tukey’s honestly significant difference (HSD) post hoc test for multiple comparisons. *P < 0.05, **P < 0.01, ***P < 0.001, and ****P < 0.0001.

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