IL-17 and IL-22: siblings, not twins.
暂无分享,去创建一个
[1] I. Agache,et al. Increased serum IL-17 is an independent risk factor for severe asthma. , 2010, Respiratory medicine.
[2] D. Artis,et al. Pathological versus protective functions of IL-22 in airway inflammation are regulated by IL-17A , 2010, The Journal of experimental medicine.
[3] S. Garcovich,et al. IL-17 Amplifies Human Contact Hypersensitivity by Licensing Hapten Nonspecific Th1 Cells to Kill Autologous Keratinocytes , 2010, The Journal of Immunology.
[4] H. Kaplan,et al. Retinal astrocytes respond to IL‐17 differently than retinal pigment epithelial cells , 2009, Journal of leukocyte biology.
[5] S. Durham,et al. Th22 cells represent a distinct human T cell subset involved in epidermal immunity and remodeling. , 2009, The Journal of clinical investigation.
[6] J. Alcorn,et al. Interleukin-17 is required for T helper 1 cell immunity and host resistance to the intracellular pathogen Francisella tularensis. , 2009, Immunity.
[7] P. Barnes,et al. IL-22 Produced by Human NK Cells Inhibits Growth of Mycobacterium tuberculosis by Enhancing Phagolysosomal Fusion1 , 2009, The Journal of Immunology.
[8] Z. Yao,et al. IL-17/Th17 Promotes Type 1 T Cell Immunity against Pulmonary Intracellular Bacterial Infection through Modulating Dendritic Cell Function1 , 2009, The Journal of Immunology.
[9] B. Stockinger,et al. The aryl hydrocarbon receptor in immunity. , 2009, Trends in immunology.
[10] R. Nurieva,et al. Bcl6 Mediates the Development of T Follicular Helper Cells , 2009, Science.
[11] B. Bucheton,et al. IL-17 and IL-22 are associated with protection against human kala azar caused by Leishmania donovani. , 2009, The Journal of clinical investigation.
[12] D. Jarrossay,et al. Production of interleukin 22 but not interleukin 17 by a subset of human skin-homing memory T cells , 2009, Nature Immunology.
[13] H. Spits,et al. Identification of a human helper T cell population that has abundant production of interleukin 22 and is distinct from TH-17, TH1 and TH2 cells , 2009, Nature Immunology.
[14] Lisa C. Zaba,et al. IL-22-producing "T22" T cells account for upregulated IL-22 in atopic dermatitis despite reduced IL-17-producing TH17 T cells. , 2009, The Journal of allergy and clinical immunology.
[15] Richard A Flavell,et al. A protective function for interleukin 17A in T cell–mediated intestinal inflammation , 2009, Nature Immunology.
[16] J. Tschopp,et al. Uric acid is a danger signal activating NALP3 inflammasome in lung injury inflammation and fibrosis. , 2009, American journal of respiratory and critical care medicine.
[17] B. Engelhardt,et al. C-C chemokine receptor 6–regulated entry of TH-17 cells into the CNS through the choroid plexus is required for the initiation of EAE , 2009, Nature Immunology.
[18] P. Allen,et al. Tumor-infiltrating regulatory dendritic cells inhibit CD8+ T cell function via L-arginine metabolism. , 2009, Cancer research.
[19] H. Spits,et al. Interleukin-22-producing innate immune cells: new players in mucosal immunity and tissue repair? , 2009, Nature Reviews Immunology.
[20] T. Mcclanahan,et al. Prostaglandin E2 regulates Th17 cell differentiation and function through cyclic AMP and EP2/EP4 receptor signaling , 2009, The Journal of experimental medicine.
[21] Erin E. Murphy,et al. Circulating and gut-resident human Th17 cells express CD161 and promote intestinal inflammation , 2009, The Journal of experimental medicine.
[22] A. Hayday,et al. CD27 is a thymic determinant of the balance between interferon-γ- and interleukin 17–producing γδ T cell subsets , 2009, Nature Immunology.
[23] C. Akdis,et al. Differentiation and functional analysis of human T(H)17 cells. , 2009, The Journal of allergy and clinical immunology.
[24] R. Écochard,et al. Genome-Wide Comparison between IL-17A- and IL-17F-Induced Effects in Human Rheumatoid Arthritis Synoviocytes1 , 2009, The Journal of Immunology.
[25] Byung S. Kim,et al. Th17 cells enhance viral persistence and inhibit T cell cytotoxicity in a model of chronic virus infection , 2009, The Journal of experimental medicine.
[26] S. Gaffen,et al. Th17 cells and IL-17 receptor signaling are essential for mucosal host defense against oral candidiasis , 2009, The Journal of experimental medicine.
[27] C. Akdis,et al. Unique Phenotype of Human Tonsillar and In Vitro-Induced FOXP3+CD8+ T Cells1 , 2009, The Journal of Immunology.
[28] T. Hamilton,et al. IL-17 Signaling for mRNA Stabilization Does Not Require TNF Receptor-Associated Factor 61 , 2009, The Journal of Immunology.
[29] J. Renauld,et al. Proinflammatory role of the Th17 cytokine interleukin-22 in collagen-induced arthritis in C57BL/6 mice. , 2009, Arthritis and rheumatism.
[30] V. Kuchroo,et al. The costimulatory molecule ICOS regulates the expression of c-Maf and IL-21 in the development of follicular T helper cells and TH-17 cells , 2009, Nature Immunology.
[31] C. Sasakawa,et al. Differential roles of interleukin-17A and -17F in host defense against mucoepithelial bacterial infection and allergic responses. , 2009, Immunity.
[32] C. Elson,et al. Late developmental plasticity in the T helper 17 lineage. , 2009, Immunity.
[33] Thomas D. Wu,et al. The Serine Protease Marapsin Is Expressed in Stratified Squamous Epithelia and Is Up-regulated in the Hyperproliferative Epidermis of Psoriasis and Regenerating Wounds* , 2009, Journal of Biological Chemistry.
[34] B. Becher,et al. IL-17A and IL-17F do not contribute vitally to autoimmune neuro-inflammation in mice. , 2008, The Journal of clinical investigation.
[35] J. Ring,et al. IL-17 in atopic eczema: linking allergen-specific adaptive and microbial-triggered innate immune response. , 2009, The Journal of allergy and clinical immunology.
[36] H. Spits,et al. Human fetal lymphoid tissue–inducer cells are interleukin 17–producing precursors to RORC+ CD127+ natural killer–like cells , 2009, Nature Immunology.
[37] Shinichiro Sawa,et al. Microbial flora drives interleukin 22 production in intestinal NKp46+ cells that provide innate mucosal immune defense. , 2008, Immunity.
[38] A. Murphy,et al. Innate and adaptive interleukin-22 protects mice from inflammatory bowel disease. , 2008, Immunity.
[39] M. Itsumi,et al. Identification of CD25+ γδ T Cells As Fetal Thymus-Derived Naturally Occurring IL-17 Producers1 , 2008, The Journal of Immunology.
[40] H. Weiner,et al. Nasal Anti-CD3 Antibody Ameliorates Lupus by Inducing an IL-10-Secreting CD4+CD25−LAP+ Regulatory T Cell and Is Associated with Down-Regulation of IL-17+CD4+ICOS+CXCR5+ Follicular Helper T Cells1 , 2008, The Journal of Immunology.
[41] Lisa C. Zaba,et al. Th17 cytokines interleukin (IL)‐17 and IL‐22 modulate distinct inflammatory and keratinocyte‐response pathways , 2008, The British journal of dermatology.
[42] K. Kabashima,et al. Possible pathogenic role of Th17 cells for atopic dermatitis. , 2008, The Journal of investigative dermatology.
[43] J. Ring,et al. Patients with chronic mucocutaneous candidiasis exhibit reduced production of Th17-associated cytokines IL-17 and IL-22. , 2008, The Journal of investigative dermatology.
[44] R Balfour Sartor,et al. Specific microbiota direct the differentiation of IL-17-producing T-helper cells in the mucosa of the small intestine. , 2008, Cell host & microbe.
[45] R. Nussenblatt,et al. Gene Expression Profiling in Autoimmune Noninfectious Uveitis Disease1 , 2008, The Journal of Immunology.
[46] Wei Liu,et al. TLR-2 and IL-17A in Chitin-Induced Macrophage Activation and Acute Inflammation1 , 2008, The Journal of Immunology.
[47] L. Cosmi,et al. Human interleukin 17–producing cells originate from a CD161+CD4+ T cell precursor , 2008, The Journal of experimental medicine.
[48] L. Joosten,et al. IL-17 produced by Paneth cells drives TNF-induced shock , 2008 .
[49] David E. Anderson,et al. IL-21 and TGF-β are required for differentiation of human TH17 cells , 2008, Nature.
[50] W. Born,et al. gammadelta T cells: an important source of IL-17. , 2008, Current opinion in immunology.
[51] S. Zheng,et al. Cutting Edge: Foxp3+CD4+CD25+ Regulatory T Cells Induced by IL-2 and TGF-β Are Resistant to Th17 Conversion by IL-61 , 2008, The Journal of Immunology.
[52] Jing Wang,et al. Interleukin 17-Producing γδ T Cells Increased in Patients with Active Pulmonary Tuberculosis , 2008, Cellular and Molecular Immunology.
[53] D. Littman,et al. The differentiation of human TH-17 cells requires transforming growth factor-β and induction of the nuclear receptor RORγt , 2008, Nature Immunology.
[54] J. Buer,et al. The aryl hydrocarbon receptor links TH17-cell-mediated autoimmunity to environmental toxins , 2008, Nature.
[55] A. Rachitskaya,et al. Cutting Edge: NKT Cells Constitutively Express IL-23 Receptor and RORγt and Rapidly Produce IL-17 upon Receptor Ligation in an IL-6-Independent Fashion1 , 2008, The Journal of Immunology.
[56] W. Paul,et al. Impaired TH17 cell differentiation in subjects with autosomal dominant hyper-IgE syndrome , 2008, Nature.
[57] Jay K Kolls,et al. Simian immunodeficiency virus–induced mucosal interleukin-17 deficiency promotes Salmonella dissemination from the gut , 2008, Nature Medicine.
[58] R. Braun,et al. IL-17 Producing γδ T Cells are Required for a Controlled Inflammatory Response after Bleomycin-induced Lung Injury , 2008, Inflammation.
[59] J. Renauld,et al. Interleukin-22 forms dimers that are recognized by two interleukin-22R1 receptor chains. , 2008, Biophysical journal.
[60] M. Fei,et al. IL-22 mediates mucosal host defense against Gram-negative bacterial pneumonia , 2008, Nature Medicine.
[61] S. Sa,et al. Interleukin-22 mediates early host defense against attaching and effacing bacterial pathogens , 2008, Nature Medicine.
[62] P. Miossec,et al. IL-17RA and IL-17RC Receptors Are Essential for IL-17A-Induced ELR+ CXC Chemokine Expression in Synoviocytes and Are Overexpressed in Rheumatoid Blood1 , 2008, The Journal of Immunology.
[63] B. Becher,et al. IL-22 Is Expressed by Th17 Cells in an IL-23-Dependent Fashion, but Not Required for the Development of Autoimmune Encephalomyelitis1 , 2007, The Journal of Immunology.
[64] L. Fouser,et al. An IL-17F/A Heterodimer Protein Is Produced by Mouse Th17 Cells and Induces Airway Neutrophil Recruitment , 2007, The Journal of Immunology.
[65] A. Murphy,et al. Interleukin-22 but not interleukin-17 provides protection to hepatocytes during acute liver inflammation. , 2007, Immunity.
[66] T. Hamilton,et al. IL-17 Enhances Chemokine Gene Expression through mRNA Stabilization1 , 2007, The Journal of Immunology.
[67] H. Kaplan,et al. Characterization of IL-17+ interphotoreceptor retinoid-binding protein-specific T cells in experimental autoimmune uveitis. , 2007, Investigative ophthalmology & visual science.
[68] L. Cosmi,et al. Phenotypic and functional features of human Th17 cells , 2007, The Journal of experimental medicine.
[69] F. Sallusto,et al. Interleukins 1β and 6 but not transforming growth factor-β are essential for the differentiation of interleukin 17–producing human T helper cells , 2007, Nature Immunology.
[70] Y. Sher,et al. Induction of a distinct CD8 Tnc17 subset by transforming growth factor‐β and interleukin‐6 , 2007, Journal of leukocyte biology.
[71] A. Chang,et al. Cutting Edge: Th17 and Regulatory T Cell Dynamics and the Regulation by IL-2 in the Tumor Microenvironment1 , 2007, The Journal of Immunology.
[72] R. Nussenblatt,et al. TH17 cells contribute to uveitis and scleritis and are expanded by IL-2 and inhibited by IL-27/STAT1 , 2007, Nature Medicine.
[73] D. Jarrossay,et al. Surface phenotype and antigenic specificity of human interleukin 17–producing T helper memory cells , 2007, Nature Immunology.
[74] K. Asadullah,et al. IL-22 Induces Lipopolysaccharide-Binding Protein in Hepatocytes: A Potential Systemic Role of IL-22 in Crohn’s Disease , 2007, The Journal of Immunology.
[75] V. Kuchroo,et al. TH-17 cells in the circle of immunity and autoimmunity , 2007, Nature Immunology.
[76] R. Locksley,et al. IL-23 and IL-17 in the establishment of protective pulmonary CD4+ T cell responses after vaccination and during Mycobacterium tuberculosis challenge , 2007, Nature Immunology.
[77] V. Tuohy,et al. The adaptor Act1 is required for interleukin 17–dependent signaling associated with autoimmune and inflammatory disease , 2007, Nature Immunology.
[78] P. Valdez,et al. Interleukin-22, a TH17 cytokine, mediates IL-23-induced dermal inflammation and acanthosis , 2007, Nature.
[79] Guang-Xian Zhang,et al. Increased IL-23p19 expression in multiple sclerosis lesions and its induction in microglia. , 2007, Brain : a journal of neurology.
[80] L. Fouser,et al. Interleukin (IL)-22 and IL-17 are coexpressed by Th17 cells and cooperatively enhance expression of antimicrobial peptides , 2006, The Journal of experimental medicine.
[81] J. Miyazaki,et al. Hydrodynamic-Based Delivery of an Interleukin-22-Ig Fusion Gene Ameliorates Experimental Autoimmune Myocarditis in Rats1 , 2006, The Journal of Immunology.
[82] L. Hennighausen,et al. Interleukin 27 negatively regulates the development of interleukin 17–producing T helper cells during chronic inflammation of the central nervous system , 2006, Nature Immunology.
[83] M. Kurrer,et al. T-bet negatively regulates autoimmune myocarditis by suppressing local production of interleukin 17 , 2006, The Journal of experimental medicine.
[84] K. Mills,et al. A crucial role for interleukin (IL)-1 in the induction of IL-17–producing T cells that mediate autoimmune encephalomyelitis , 2006, The Journal of experimental medicine.
[85] K. Asadullah,et al. IL‐22 regulates the expression of genes responsible for antimicrobial defense, cellular differentiation, and mobility in keratinocytes: a potential role in psoriasis , 2006, European journal of immunology.
[86] L. Presta,et al. Anti-IL-23 therapy inhibits multiple inflammatory pathways and ameliorates autoimmune encephalomyelitis. , 2006, The Journal of clinical investigation.
[87] K. Hiromura,et al. Expression of interleukin-22 in rheumatoid arthritis: potential role as a proinflammatory cytokine. , 2005, Arthritis and rheumatism.
[88] A. Gurney,et al. IL-22 Inhibits Epidermal Differentiation and Induces Proinflammatory Gene Expression and Migration of Human Keratinocytes1 , 2005, The Journal of Immunology.
[89] T. Mcclanahan,et al. IL-23 drives a pathogenic T cell population that induces autoimmune inflammation , 2005, The Journal of experimental medicine.
[90] A. Lindén,et al. Interleukin-17 family members and inflammation. , 2004, Immunity.
[91] K. Asadullah,et al. IL-22 increases the innate immunity of tissues. , 2004, Immunity.
[92] P. Schwarzenberger,et al. Requirement of interleukin-17A for systemic anti-Candida albicans host defense in mice. , 2004, The Journal of infectious diseases.
[93] R. Sun,et al. Interleukin 22 (IL‐22) plays a protective role in T cell‐mediated murine hepatitis: IL‐22 is a survival factor for hepatocytes via STAT3 activation , 2004, Hepatology.
[94] L. Joosten,et al. Treatment with a neutralizing anti-murine interleukin-17 antibody after the onset of collagen-induced arthritis reduces joint inflammation, cartilage destruction, and bone erosion. , 2004, Arthritis and rheumatism.
[95] B. Gao,et al. Hydrodynamic Gene Delivery of Interleukin-22 Protects the Mouse Liver from Concanavalin A-, Carbon Tetrachloride-, and Fas Ligand-induced Injury via Activation of Stat3 Interleukin-22 (il-22) Is a Recently Identified T Cell-derived Cytokine Whose Biological Significance Remains Obscure. Previously, , 2022 .
[96] T. Mcclanahan,et al. Divergent Pro- and Antiinflammatory Roles for IL-23 and IL-12 in Joint Autoimmune Inflammation , 2003, The Journal of experimental medicine.
[97] M. Zago,et al. The Profile of Gene Expression of Human Marrow Mesenchymal Stem Cells , 2003, Stem cells.
[98] T. Moseley,et al. Interleukin-17 family and IL-17 receptors. , 2003, Cytokine & growth factor reviews.
[99] L. Joosten,et al. IL-17 Promotes Bone Erosion in Murine Collagen-Induced Arthritis Through Loss of the Receptor Activator of NF-κB Ligand/Osteoprotegerin Balance 1 , 2003, The Journal of Immunology.
[100] S. Ferretti,et al. IL-17, Produced by Lymphocytes and Neutrophils, Is Necessary for Lipopolysaccharide-Induced Airway Neutrophilia: IL-15 as a Possible Trigger , 2003, The Journal of Immunology.
[101] R. Kastelein,et al. Interleukin-23 rather than interleukin-12 is the critical cytokine for autoimmune inflammation of the brain , 2003, Nature.
[102] A. Gurney,et al. Interleukin-23 Promotes a Distinct CD4 T Cell Activation State Characterized by the Production of Interleukin-17* , 2003, The Journal of Biological Chemistry.
[103] A. Andoh,et al. Increased expression of interleukin 17 in inflammatory bowel disease , 2003, Gut.
[104] Diane Lejeune,et al. Interleukin-22 (IL-22) Activates the JAK/STAT, ERK, JNK, and p38 MAP Kinase Pathways in a Rat Hepatoma Cell Line , 2002, The Journal of Biological Chemistry.
[105] L. Onuchic,et al. Activation of Extracellular Signal-regulated Kinase (ERK)1/2, but Not p38 and c-Jun N-terminal Kinase, Is Involved in Signaling of a Novel Cytokine, ML-1* , 2002, The Journal of Biological Chemistry.
[106] T. Moseley,et al. Soluble and Transmembrane Isoforms of Novel Interleukin-17 Receptor-like Protein by RNA Splicing and Expression in Prostate Cancer* , 2002, The Journal of Biological Chemistry.
[107] K. Hillan,et al. Pathways by which interleukin 17 induces articular cartilage breakdown in vitro and in vivo. , 2001, Cytokine.
[108] Scott R. Presnell,et al. A soluble class II cytokine receptor, IL-22RA2, is a naturally occurring IL-22 antagonist , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[109] J. Renauld,et al. IL-TIF/IL-22: genomic organization and mapping of the human and mouse genes , 2000, Genes and Immunity.
[110] M. Byrne,et al. Microbial Lipopeptides Induce the Production of IL-17 in Th Cells1 , 2000, The Journal of Immunology.
[111] Zemin Zhang,et al. Interleukin (IL)-22, a Novel Human Cytokine That Signals through the Interferon Receptor-related Proteins CRF2–4 and IL-22R* , 2000, The Journal of Biological Chemistry.
[112] J. Renauld,et al. Human interleukin-10-related T cell-derived inducible factor: molecular cloning and functional characterization as an hepatocyte-stimulating factor. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[113] C. Albanesi,et al. Interleukin-17 is produced by both Th1 and Th2 lymphocytes, and modulates interferon-gamma- and interleukin-4-induced activation of human keratinocytes. , 2000, The Journal of investigative dermatology.
[114] J. Dayer,et al. Contribution of interleukin 17 to synovium matrix destruction in rheumatoid arthritis. , 2000, Cytokine.
[115] K. Yamaguchi,et al. Requirement of Tumor Necrosis Factor Receptor–Associated Factor (Traf)6 in Interleukin 17 Signal Transduction , 2000, The Journal of experimental medicine.
[116] Jamila Louahed,et al. Cloning and Characterization of IL-10-Related T Cell-Derived Inducible Factor (IL-TIF), a Novel Cytokine Structurally Related to IL-10 and Inducible by IL-91 , 2000, The Journal of Immunology.
[117] H. Reinecker,et al. NF-kappa B-inducing kinase is a common mediator of IL-17-, TNF-alpha-, and IL-1 beta-induced chemokine promoter activation in intestinal epithelial cells. , 1999, Journal of immunology.
[118] S. Esnault,et al. Expression of IL-17 in human memory CD45RO+ T lymphocytes and its regulation by protein kinase A pathway. , 1999, Cytokine.
[119] J. Lötvall,et al. Neutrophil recruitment by human IL-17 via C-X-C chemokine release in the airways. , 1999, Journal of immunology.
[120] C. Albanesi,et al. IL-17 Is Produced by Nickel-Specific T Lymphocytes and Regulates ICAM-1 Expression and Chemokine Production in Human Keratinocytes: Synergistic or Antagonist Effects with IFN-γ and TNF-α , 1999, The Journal of Immunology.
[121] F. Denizot,et al. CTLA-8, cloned from an activated T cell, bearing AU-rich messenger RNA instability sequences, and homologous to a herpesvirus saimiri gene. , 1993, Journal of immunology.