0000000000326780

AUTHOR

Udo Herz

showing 5 related works from this author

TGF-beta regulates airway responses via T cells.

2003

Abstract Allergic asthma is characterized by airway hyperreactivity, inflammation, and a Th2-type cytokine profile favoring IgE production. Beneficial effects of TGF-β and conflicting results regarding the role of Th1 cytokines have been reported from murine asthma models. In this study, we examined the T cell as a target cell of TGF-β-mediated immune regulation in a mouse model of asthma. We demonstrate that impairment of TGF-β signaling in T cells of transgenic mice expressing a dominant-negative TGF-β type II receptor leads to a decrease in airway reactivity in a non-Ag-dependent model. Increased serum levels of IFN-γ can be detected in these animals. In contrast, after injection of OVA …

Epitopes T-LymphocyteNitric Oxide Synthase Type IIImmunoglobulin EMiceAntibody SpecificityCell MovementT-Lymphocyte SubsetsTransforming Growth Factor betaImmunology and AllergyInterferon gammaLungInterleukin-13biologymedicine.diagnostic_testrespiratory systemImmunohistochemistrymedicine.anatomical_structureInterleukin 13Alum Compoundsmedicine.symptomBronchial HyperreactivityBronchoalveolar Lavage Fluidmedicine.drugGenetically modified mousemedicine.medical_specialtyOvalbuminT cellImmunologyCD2 AntigensInflammationMice Inbred StrainsMice TransgenicProtein Serine-Threonine KinasesInterferon-gammaInternal medicineAdministration InhalationmedicineAnimalsHumansAerosolsInflammationbusiness.industryReceptor Transforming Growth Factor-beta Type IITransforming growth factor betaImmunoglobulin ETh1 Cellsrespiratory tract diseasesEndocrinologyBronchoalveolar lavageImmunologybiology.proteinNitric Oxide SynthasebusinessReceptors Transforming Growth Factor betaJournal of immunology (Baltimore, Md. : 1950)
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Deficient cytokine response of human allergen-specific T lymphocytes from humanized SCID mice and reconstitution by professional antigen-presenting c…

2000

Abstract Background: Hu-PBL-SCID mice generated by the transfer of PBMCs from atopic individuals may provide a physiologic in vivo model for investigating human responses to allergens and potential approaches toward immunotherapy. Objective: This study was undertaken to investigate the functional activity and cytokine profile of human allergen-reactive T lymphocytes isolated from hu-PBL-SCID mice. Methods: PBMCs from allergic individuals were coinjected with allergen into SCID mice. Human lymphocyte migration and phenotype were established by reverse transcription–PCR and immunohistochemistry, IgE levels in sera were determined, and the frequency of allergen-reactive cytokine-producing T ly…

Lymphoid Tissuemedicine.medical_treatmentT-LymphocytesImmunologyAntigen-Presenting CellsMice SCIDBiologyImmunoglobulin EEpitopesMiceImmune systemTh2 CellsCell MovementmedicineImmunology and AllergyAnimalsHumansInterferon gammaRNA MessengerAntigen-presenting cellInterleukin 5Cells CulturedT lymphocyteImmunotherapyAllergensImmunoglobulin ECytokineImmunologyAntibody Formationbiology.proteinCytokinesPeritoneumSpleenmedicine.drugThe Journal of allergy and clinical immunology
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15. Mainzer Allergie-Workshop 2003

2003

030207 dermatology & venereal diseases03 medical and health sciencesmedicine.medical_specialty0302 clinical medicine030228 respiratory systemOtorhinolaryngologybusiness.industryFamily medicinemedicineImmunology and AllergybusinessAllergo Journal
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Influenza A virus infection inhibits the efficient recruitment of Th2 cells into the airways and the development of airway eosinophilia.

2003

Abstract Most infections with respiratory viruses induce Th1 responses characterized by the generation of Th1 and CD8+ T cells secreting IFN-γ, which in turn have been shown to inhibit the development of Th2 cells. Therefore, it could be expected that respiratory viral infections mediate protection against asthma. However, the opposite seems to be true, because viral infections are often associated with the exacerbation of asthma. For this reason, we investigated what effect an influenza A (flu) virus infection has on the development of asthma. We found that flu infection 1, 3, 6, or 9 wk before allergen airway challenge resulted in a strong suppression of allergen-induced airway eosinophil…

ChemokineEpitopes T-LymphocyteImmunoglobulin Emedicine.disease_causeMiceCell MovementInfluenza A virusImmunology and AllergyEosinophiliaChemokine CCL5LungCells CulturedChemokine CCL2Mice KnockoutMice Inbred BALB Cbiologymedicine.diagnostic_testrespiratory systemUp-Regulationmedicine.anatomical_structureInfluenza A virusChemokines CCGoblet CellsNippostrongylusmedicine.symptomBronchial HyperreactivityChemokine CCL11OvalbuminImmunologyDown-RegulationMice TransgenicCCL5VirusInterferon-gammaTh2 CellsOrthomyxoviridae InfectionsLymphopeniamedicineAnimalsLymphocyte CountPulmonary EosinophiliaStrongylida InfectionsGoblet cellMetaplasiaAllergensPeptide Fragmentsrespiratory tract diseasesMice Inbred C57BLBronchoalveolar lavageImmunologyCell Migration Inhibitionbiology.proteinInterleukin-5Journal of immunology (Baltimore, Md. : 1950)
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Treatment of allergic airway inflammation and hyperresponsiveness by antisense-induced local blockade of GATA-3 expression.

2001

Recent studies in transgenic mice have revealed that expression of a dominant negative form of the transcription factor GATA-3 in T cells can prevent T helper cell type 2 (Th2)-mediated allergic airway inflammation in mice. However, it remains unclear whether GATA-3 plays a role in the effector phase of allergic airway inflammation and whether antagonizing the expression and/or function of GATA-3 can be used for the therapy of allergic airway inflammation and hyperresponsiveness. Here, we analyzed the effects of locally antagonizing GATA-3 function in a murine model of asthma. We could suppress GATA-3 expression in interleukin (IL)-4–producing T cells in vitro and in vivo by an antisense ph…

Genetically modified mouseOvalbuminmedicine.medical_treatmentImmunologyT cellsInflammationGATA3 Transcription FactorGATA-3Proinflammatory cytokineMiceTh2 CellsImmunology and AllergyMedicineAnimalsInterleukin 9LungInterleukin 4Mice Inbred BALB Cbiologybusiness.industryInterleukin-9InterleukinOligonucleotides Antisenseasthmaantisense DNADNA-Binding ProteinsEosinophilsOvalbuminCytokineImmunologybiology.proteinTrans-ActivatorsFemaleOriginal ArticleInterleukin-4Th2 cytokinesmedicine.symptomBronchial HyperreactivitybusinessThe Journal of experimental medicine
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