Interleukin-4 and interferon-γ orchestrate an epithelial polarization in the airways
暂无分享,去创建一个
Fabian J Theis | G. Piontek | H. Heine | C. Schmidt‐Weber | U. Zissler | B. Knapp | A. Chaker | R. Effner | F. Guerth | M. Regn | K. Suttner | M. Ulrich | K. Dietz
[1] M. Rothenberg. Molecular, genetic, and cellular bases for treating eosinophilic esophagitis. , 2015, Gastroenterology.
[2] G. Stein,et al. Runx2–smad signaling impacts the progression of tumor‐induced bone disease , 2015, International journal of cancer.
[3] K. Eyerich,et al. Th22 cells in allergic disease , 2015, Allergo Journal International.
[4] E. Herrmann,et al. Airway inflammation in children and adolescents with bronchiolitis obliterans. , 2014, Cytokine.
[5] Y. Bossé,et al. Lung expression quantitative trait loci data set identifies important functional polymorphisms in the asthma-associated IL1RL1 region. , 2014, The Journal of allergy and clinical immunology.
[6] U. Oh,et al. Anoctamin 1 in secretory epithelia. , 2014, Cell calcium.
[7] L. Guillot,et al. Anoctamin 1 dysregulation alters bronchial epithelial repair in cystic fibrosis. , 2013, Biochimica et biophysica acta.
[8] A. Dalmasso,et al. Interleukin-4 Induces Up-regulation of Endothelial Cell Claudin-5 through Activation of FoxO1 , 2013, The Journal of Biological Chemistry.
[9] A. Orekhov,et al. Novel monocyte biomarkers of atherogenic conditions. , 2013, Current pharmaceutical design.
[10] Se Jin Park,et al. Increased Expression of YKL-40 in Mild and Moderate/Severe Persistent Allergic Rhinitis and its Possible Contribution to Remodeling of Nasal Mucosa , 2013, American journal of rhinology & allergy.
[11] A. Bush,et al. IL-33 promotes airway remodeling in pediatric patients with severe steroid-resistant asthma. , 2013, The Journal of allergy and clinical immunology.
[12] A. De Luca,et al. Tryptophan catabolites from microbiota engage aryl hydrocarbon receptor and balance mucosal reactivity via interleukin-22. , 2013, Immunity.
[13] M. Wagenmann,et al. Comparison of the Nasal Release of IL-4, IL-10, IL-17, CCL13/MCP-4, and CCL26/eotaxin-3 in Allergic Rhinitis during Season and after Allergen Challenge , 2013, American journal of rhinology & allergy.
[14] S. Durham,et al. IL-22 suppresses IFN-γ-mediated lung inflammation in asthmatic patients. , 2013, The Journal of allergy and clinical immunology.
[15] T. Himi,et al. The role of IL‐33 and its receptor ST2 in human nasal epithelium with allergic rhinitis , 2012, Clinical and experimental allergy : journal of the British Society for Allergy and Clinical Immunology.
[16] M. Meurer,et al. Up‐regulation of CCL11 and CCL26 is associated with activated eosinophils in bullous pemphigoid , 2011, Clinical and experimental immunology.
[17] M. Weller,et al. An endogenous tumour-promoting ligand of the human aryl hydrocarbon receptor , 2011, Nature.
[18] M. Wagenmann,et al. Rhinitis , sinusitis , and upper airway disease Petasol butenoate complex ( Ze 339 ) relieves allergic rhinitis – induced nasal obstruction more effectively than desloratadine , 2011 .
[19] J. Saurat,et al. In Vivo Dioxin Favors Interleukin-22 Production by Human CD4+ T Cells in an Aryl Hydrocarbon Receptor (AhR)-Dependent Manner , 2011, PloS one.
[20] A. Cavani,et al. IL-17 and IL-22: siblings, not twins. , 2010, Trends in immunology.
[21] Y. Naito,et al. Expression of the interleukin-4 receptor α in human conjunctival epithelial cells , 2010, British Journal of Ophthalmology.
[22] M. Sander,et al. Nkx6 transcription factors and Ptf1a function as antagonistic lineage determinants in multipotent pancreatic progenitors. , 2010, Developmental cell.
[23] Eva Herrmann,et al. Sputum biomarker profiles in cystic fibrosis (CF) and chronic obstructive pulmonary disease (COPD) and association between pulmonary function. , 2010, Cytokine.
[24] Z. Werb,et al. GATA3 in development and cancer differentiation: Cells GATA have it! , 2010, Journal of cellular physiology.
[25] M. Macoritto,et al. Autocrine Regulation of Interferon γ in Mesenchymal Stem Cells Plays a Role in Early Osteoblastogenesis , 2009, Stem cells.
[26] P. Barnes,et al. Der p 1 suppresses indoleamine 2, 3-dioxygenase in dendritic cells from house dust mite-sensitive patients with asthma. , 2009, The Journal of allergy and clinical immunology.
[27] C. Schmidt‐Weber,et al. Th17 and treg cells innovate the TH1/TH2 concept and allergy research. , 2008, Chemical immunology and allergy.
[28] A. Karsan,et al. Notch Signaling in Cardiac Development , 2008, Circulation research.
[29] K. Christopher Garcia,et al. Molecular and Structural Basis of Cytokine Receptor Pleiotropy in the Interleukin-4/13 System , 2008, Cell.
[30] S. Holgate. Epithelium dysfunction in asthma. , 2007, The Journal of allergy and clinical immunology.
[31] B. Lambrecht,et al. GATA3-Driven Th2 Responses Inhibit TGF-β1–Induced FOXP3 Expression and the Formation of Regulatory T Cells , 2007, PLoS biology.
[32] S. Toda,et al. Periostin: a novel component of subepithelial fibrosis of bronchial asthma downstream of IL-4 and IL-13 signals. , 2006, The Journal of allergy and clinical immunology.
[33] 根岸 孝昭. Effects of aryl hydrocarbon receptor signaling on the modulation of Th1/Th2 balance , 2006 .
[34] J. Shelhamer,et al. Influence of IFN-on gene expression in normal human bronchial epithelial cells : modulation of IFN-effects by dexamethasone , 2005 .
[35] M. Kubo,et al. Induction and activation of the aryl hydrocarbon receptor by IL-4 in B cells. , 2005, International immunology.
[36] J. Shelhamer,et al. Influence of IFN-gamma on gene expression in normal human bronchial epithelial cells: modulation of IFN-gamma effects by dexamethasone. , 2005, Physiological genomics.
[37] Alicia González,et al. Interferon-γ and Interleukin-10 Gene Polymorphisms in Pulmonary Tuberculosis , 2003 .
[38] T. Turner,et al. 5′ Hox Genes and Meis 1, a Hox-DNA Binding Cofactor, Are Expressed in the Adult Mouse Epididymis1 , 2003, Biology of reproduction.
[39] Alicia González,et al. Interferon-gamma and interleukin-10 gene polymorphisms in pulmonary tuberculosis. , 2003, American journal of respiratory and critical care medicine.
[40] R. Coffman,et al. New IL-17 Family Members Promote Th1 or Th2 Responses in the Lung: In Vivo Function of the Novel Cytokine IL-251 , 2002, The Journal of Immunology.
[41] M. Schroth,et al. Interferon- γ Enhances Rhinovirus-Induced RANTES Secretion by Airway Epithelial Cells , 2002 .
[42] D. Romberger,et al. Th2 cytokine regulation of type I collagen gel contraction mediated by human lung mesenchymal cells. , 2002, American journal of physiology. Lung cellular and molecular physiology.
[43] M. Schroth,et al. Interferon-gamma enhances rhinovirus-induced RANTES secretion by airway epithelial cells. , 2002, American journal of respiratory cell and molecular biology.
[44] K. Dalhoff,et al. Intracellular cytokine repertoire in different T cell subsets from patients with sarcoidosis , 2001, Thorax.
[45] H. Hoogsteden,et al. Nasal allergen provocation induces adhesion molecule expression and tissue eosinophilia in upper and lower airways. , 2001, The Journal of allergy and clinical immunology.
[46] G. Tau,et al. Biologic functions of the IFN‐γ receptors , 1999, Allergy.
[47] M. Ando,et al. Polarized type 1 cytokine profile in bronchoalveolar lavage T cells of patients with hypersensitivity pneumonitis. , 1999, Journal of immunology.
[48] Q. Hamid,et al. The T cell-specific CXC chemokines IP-10, Mig, and I-TAC are expressed by activated human bronchial epithelial cells. , 1999, Journal of immunology.
[49] R. Homer,et al. Induction of Airway Mucus Production By T Helper 2 (Th2) Cells: A Critical Role For Interleukin 4 In Cell Recruitment But Not Mucus Production , 1997, The Journal of experimental medicine.