Search results for " Transgenic"

showing 10 items of 522 documents

Induction of B-cell development in adult mice reveals the ability of bone marrow to produce B-1a cells

2009

AbstractTo study B-cell development from bone marrow (BM), we generated recombination-activating gene 1 (Rag1)–targeted mice lacking mature lymphocytes. B-cell development can be induced in such mice by B cell–specific restoration of a functional Rag1 transcription unit. Follicular and marginal zone B cells populated the spleen when Rag1 expression was permitted. Notably, the peritoneal cavity was dominated by bona fide B-1a cells, as judged by surface markers and functional properties. These BM-derived B-1a cells exhibited a polyclonal VDJ repertoire with substantial N nucleotide insertions. Nevertheless, physiologic frequencies of phosphatidylcholine-specific B cells were detected. Import…

Adoptive cell transfer1303 BiochemistryGenes RAG-1Immunology2720 HematologyB-Lymphocyte SubsetsSpleenBone Marrow CellsEnzyme-Linked Immunosorbent AssayMice Transgenic610 Medicine & healthBiology10263 Institute of Experimental ImmunologyBiochemistryPolymerase Chain ReactionRecombination-activating gene1307 Cell BiologyPeritoneal cavityMicemedicineAnimalsB cellB-Lymphocytes2403 ImmunologyStem CellsCell DifferentiationCell BiologyHematologyMarginal zoneFlow CytometryMolecular biologyAdoptive Transfermedicine.anatomical_structureImmunoglobulin MImmunologybiology.protein570 Life sciences; biologyBone marrow
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Genetic proof for the transient nature of the Th17 phenotype

2010

IL-17-producing CD4(+) T cells (Th17) have been classified as a new T helper cell subset. Using an IL-17 fate mapping mouse strain, which genetically fixes the memory of IL-17 expression, we demonstrate that IL-17A/F-expressing T helper cells generated either in vitro or in vivo are not a stable T-cell subset. Upon adoptive transfer of IL-17F-reporter-positive Th17 cells to RAG-deficient or WT animals, encephalitogenic Th17 cells partially lose IL-17 expression and upregulate IFN-γ. Additionally, we show that Th1 cells can convert in vivo to IL-17A/IFN-γ-coexpressing cells in the mesenteric lymph nodes (mLN). Our data classify IL-17A and IL-17F as cytokines produced transiently in response …

Adoptive cell transferEncephalomyelitis Autoimmune ExperimentalGenes RAG-1TransgeneImmunologyReceptors Antigen T-CellMice TransgenicBiologyLymphocyte ActivationInterferon-gammaMiceInterleukin 21AntigenGenes ReporterT-Lymphocyte SubsetsIn vivomedicineAnimalsImmunology and AllergyCytotoxic T cellMesenteric lymph nodesMice KnockoutIntegrasesCell DifferentiationT helper cellTh1 CellsAdoptive TransferCell biologyMice Inbred C57BLmedicine.anatomical_structureGene Expression RegulationImmunologyTh17 CellsEuropean Journal of Immunology
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T cells expressing a chimeric antigen receptor that binds hepatitis B virus envelope proteins control virus replication in mice.

2013

Background & Aims Antiviral agents suppress hepatitis B virus (HBV) replication but do not clear the infection. A strong effector T-cell response is required to eradicate HBV, but this does not occur in patients with chronic infection. T cells might be directed toward virus-infected cells by expressing HBV-specific receptors and thereby clear HBV and help to prevent development of liver cancer. In mice, we studied whether redirected T cells can engraft after adoptive transfer, without prior T-cell depletion, and whether the large amounts of circulating viral antigens inactivate the transferred T cells or lead to uncontrolled immune-mediated damage. Methods CD8 + T cells were isolated from m…

Adoptive cell transferHepatitis B virusRecombinant Fusion ProteinsReceptors Antigen T-CellMice TransgenicAdoptive T-Cell TherapyCD8-Positive T-Lymphocytesmedicine.disease_causeVirus ReplicationInterleukin 21MiceViral Envelope ProteinsmedicineCytotoxic T cellAnimalsHumansIL-2 receptorAntigen-presenting cellHepatitis B virusCD40HepatologybiologyZAP70Gastroenterologyvirus diseasesHepatocellular CarcinomaVirologyMolecular biologyAdoptive TransferMice Inbred C57BLLiverbiology.proteinImmunotherapyChronic Hepatitis BGastroenterology
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Stat3 and Gfi-1 Transcription Factors Control Th17 Cell Immunosuppressive Activity via the Regulation of Ectonucleotidase Expression

2012

International audience; Although Th17 cells are known to promote tissue inflammation and autoimmunity, their role during cancer progression remains elusive. Here, we showed that in vitro Th17 cells generated with the cytokines IL-6 and TGF-β expressed CD39 and CD73 ectonucleotidases, leading to adenosine release and the subsequent suppression of CD4(+) and CD8(+) T cell effector functions. The IL-6-mediated activation of the transcription factor Stat3 and the TGF-β-driven downregulation of Gfi-1 transcription factor were both essential for the expression of ectonucleotidases during Th17 cell differentiation. Stat3 supported whereas Gfi-1 repressed CD39 and CD73 expression by binding to thei…

Adoptive cell transferMESH : Transcription FactorsCellular differentiationMESH: Th17 CellsT-LymphocytesCellMESH : Promoter Regions GeneticMESH : RNA Small InterferingMESH: Mice KnockoutMice0302 clinical medicineTransforming Growth Factor betaMESH: RNA Small InterferingMESH : STAT3 Transcription FactorImmunology and Allergy[ SDV.IMM ] Life Sciences [q-bio]/ImmunologyEctonucleotidaseMESH: AnimalsRNA Small InterferingSTAT3MESH: Lymphocytes Tumor-InfiltratingPromoter Regions GeneticMESH: Antigens CD5'-NucleotidaseRegulation of gene expressionMice Knockout0303 health sciencesMESH : Gene Expression RegulationApyraseMESH: STAT3 Transcription FactorMESH: Transcription FactorsMESH: Gene Expression RegulationMESH : Mice TransgenicCell biologyMESH : Lymphocytes Tumor-InfiltratingDNA-Binding ProteinsMESH : ApyraseInfectious Diseasesmedicine.anatomical_structure[SDV.IMM]Life Sciences [q-bio]/ImmunologyMESH : DNA-Binding ProteinsMESH: ApyraseSTAT3 Transcription Factor[SDV.IMM] Life Sciences [q-bio]/ImmunologyMESH : Interleukin-6MESH: Mice TransgenicT cellImmunologyMice TransgenicMESH : Mice Inbred C57BLBiology03 medical and health sciencesLymphocytes Tumor-InfiltratingMESH: Mice Inbred C57BLAntigens CDMESH: Promoter Regions GeneticMESH : 5'-NucleotidaseMESH : MicemedicineMESH : Antigens CDMESH : Th17 CellsAnimalsTranscription factorMESH: MiceMESH: Transforming Growth Factor beta030304 developmental biologyMESH : T-LymphocytesBinding SitesInterleukin-6MESH: Interleukin-6Mice Inbred C57BLMESH: T-LymphocytesMESH : Transforming Growth Factor betaMESH: Binding SitesGene Expression Regulationbiology.proteinMESH : Mice KnockoutTh17 CellsMESH : AnimalsMESH: 5'-NucleotidaseMESH: DNA-Binding ProteinsMESH : Binding Sites030215 immunologyTranscription FactorsImmunity
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Coexpression of TGF-β1 and IL-10 Enables Regulatory T Cells to Completely Suppress Airway Hyperreactivity

2008

Abstract In allergic airway disease, Treg may play an important role in the modulation of airway hyperreactivity (AHR) and inflammation. We therefore investigated the therapeutic potential of Treg in an Ag-dependent murine asthma model. We here describe that AHR can be completely suppressed by adoptive transfer of Treg overexpressing active TGF-β1. Using mice with impaired TGF-β signaling in T cells, we could demonstrate that TGF-β signaling in recipient effector T cells or transferred Treg themselves is not required for the protective effects on AHR. However, the expression of IL-10 by Treg was found to be essential for the suppression of AHR, since Treg overexpressing active TGF-β1 but de…

Adoptive cell transferTransgeneImmunologyGene ExpressionMice Transgenicchemical and pharmacologic phenomenaInflammationT-Lymphocytes RegulatoryTransforming Growth Factor beta1MiceRespiratory HypersensitivitymedicineAnimalsImmunology and AllergyAsthmaInflammationbusiness.industryEffectorhemic and immune systemsrespiratory systemmedicine.diseaseAdoptive TransferAirway hyperreactivityInterleukin-10respiratory tract diseasesDisease Models AnimalInterleukin 10Immunologymedicine.symptombusinessSignal TransductionTransforming growth factorThe Journal of Immunology
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Therapeutic Vaccination of Hematopoietic Cell Transplantation Recipients Improves Protective CD8 T-Cell Immunotherapy of Cytomegalovirus Infection

2021

Reactivation of latent cytomegalovirus (CMV) endangers the therapeutic success of hematopoietic cell transplantation (HCT) in tumor patients due to cytopathogenic virus spread that leads to organ manifestations of CMV disease, to interstitial pneumonia in particular. In cases of virus variants that are refractory to standard antiviral pharmacotherapy, immunotherapy by adoptive cell transfer (ACT) of virus-specific CD8+ T cells is the last resort to bridge the “protection gap” between hematoablative conditioning for HCT and endogenous reconstitution of antiviral immunity. We have used the well-established mouse model of CD8+ T-cell immunotherapy by ACT in a setting of experimental HCT and mu…

Adoptive cell transfermedicine.medical_treatmentImmunologyCytomegalovirusCD8-Positive T-LymphocytesLymphocyte ActivationCD8+ T cellsVirusCytomegalovirus VaccinesImmunocompromised HostAntigenvaccineMHC class ImedicineImmunology and AllergyCytotoxic T cellAnimalsCells Culturedadoptive cell transferCell ProliferationOriginal ResearchHCMV dense bodiesbiologybusiness.industryVaccinationHematopoietic Stem Cell TransplantationImmunotherapyRC581-607VirologyAdoptive TransferTransplantationMice Inbred C57BLantiviral protectionT cell primingDisease Models AnimalT cell receptor transgenic cellsCytomegalovirus InfectionsHost-Pathogen Interactionsbiology.proteinFemaleVirus Activationsubviral particlesImmunologic diseases. AllergybusinessCD8Frontiers in Immunology
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TH17 cells mediate pulmonary collateral priming

2010

Background Our laboratory has shown that inhalational sensitization to new antigens is facilitated through an ongoing T H 2-polarized inflammation of the lung, a phenomenon we call "collateral priming." Objective We were interested to analyze whether a T H 1-polarized pulmonary inflammation also facilitates priming toward new antigens and which cytokine or cytokines are involved. Methods T H 1-polarized T cells were generated in vitro and transferred into congenic mice. Mice were challenged initially with cognate antigen and an unrelated antigen; consecutively, they received cognate antigen or the secondary antigen. Airway inflammation, antigen-specific IgG2a levels, and airway hyperrespons…

Adoptive cell transfermedicine.medical_treatmentImmunologyPriming (immunology)Mice TransgenicCell SeparationLymphocyte ActivationArticleAllergic sensitizationMiceAntigenmedicineAnimalsImmunology and AllergyCytotoxic T cellAntigen-presenting cellLungMice Inbred BALB Cbusiness.industryInterleukin-17PneumoniaFlow CytometryAdoptive TransferCytokineInhalationImmunologyTh17 CellsInterleukin 17Bronchial HyperreactivitybusinessJournal of Allergy and Clinical Immunology
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Identification of CD4 T-Cell Epitopes in Soluble Liver Antigen/Liver Pancreas Autoantigen in Autoimmune Hepatitis

2008

Background & Aims Autoimmune hepatitis (AIH) is a chronic inflammatory liver disease associated with autoantibodies and liver-infiltrating lymphocytes. Although autoantibodies are tested routinely to diagnose and classify AIH, liver-infiltrating lymphocytes are regarded as the primary factor for disease pathogenesis. The purpose of this study was to identify and characterize autoantigenic peptides within human AIH-specific soluble liver antigen/liver pancreas antigen (SLA/LP) that are targeted by CD4 + T cells and restricted by the disease susceptibility gene HLA-DRB1*0301. Methods HLA-DRB1*0301 transgenic mice were immunized with SLA/LP. Antibody and T-cell responses were analyzed with SLA…

AdultCD4-Positive T-LymphocytesMaleEpitopes T-LymphocyteMice TransgenicAutoimmune hepatitisBiologyAutoantigensPeripheral blood mononuclear cellArticleEpitopeImmunoenzyme TechniquesMiceYoung AdultLiver diseaseimmune system diseasesmedicineAnimalsHumansAgedAutoantibodiesHepatologymedicine.diagnostic_testELISPOTGastroenterologyAutoantibodyMiddle Agedmedicine.diseaseVirologyMice Inbred C57BLDisease Models AnimalHepatitis AutoimmuneImmunoassayImmunologybiology.proteinFemaleAntibodyGastroenterology
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Genome-based in silico identification of new Mycobacterium tuberculosis antigens activating polyfunctional CD8+ T cells in human tuberculosis.

2011

Although CD8(+) T cells help control Mycobacterium tuberculosis infection, their M. tuberculosis Ag repertoire, in vivo frequency, and functionality in human tuberculosis (TB) remains largely undefined. We have performed genome-based bioinformatics searches to identify new M. tuberculosis epitopes presented by major HLA class I supertypes A2, A3, and B7 (covering 80% of the human population). A total of 432 M. tuberculosis peptides predicted to bind to HLA-A*0201, HLA-A*0301, and HLA-B*0702 (representing the above supertypes) were synthesized and HLA-binding affinities determined. Peptide-specific CD8(+) T cell proliferation assays (CFSE dilution) in 41 M. tuberculosis-responsive donors ide…

AdultIntracellular FluidMaleTuberculosisT cellImmunologyEpitopes T-LymphocyteHuman leukocyte antigenCD8-Positive T-LymphocytesLymphocyte ActivationEpitopeTuberculosis CD8 T cells cytokinesMycobacterium tuberculosis03 medical and health sciencesAntigenifn-gamma protective efficacy binding-affinity dormancy regulon subunit vaccine transgenic mice hla-b epitopes infection responsesPredictive Value of TestsmedicineImmunology and AllergyCytotoxic T cellHumansTuberculosis030304 developmental biologyAged0303 health sciencesAntigens Bacterialbiology030306 microbiologyGenome HumanComputational BiologyMycobacterium tuberculosisMiddle Agedbiology.organism_classificationmedicine.diseaseVirology3. Good healthmedicine.anatomical_structureFemaleCD8Genome BacterialJournal of immunology (Baltimore, Md. : 1950)
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Spinal Endocannabinoids and CB 1 Receptors Mediate C-Fiber–Induced Heterosynaptic Pain Sensitization

2009

Plastic Pain Perception Drugs and endocannabinoids acting on cannabinoid (CB) receptors have potential in the treatment of certain types of pain. In the spinal cord they are believed to suppress nociception, the perception of pain and noxious stimuli. Pernia-Andrade et al. (p. 760 ) now find that endocannabinoids, which are released in spinal cord by noxious stimulation, may promote rather than inhibit nociception by acting on CB1 receptors. Endocannabinoids not only depress transmission at excitatory synapses in the spinal cord, but also block the release of inhibitory neurotransmitters, thereby facilitating nociception.

AdultMaleInterneuronPainMice TransgenicNeurotransmissionInhibitory postsynaptic potentialSynaptic TransmissionArticleRats Sprague-DawleyMiceYoung AdultPiperidinesReceptor Cannabinoid CB1InterneuronsCannabinoid Receptor ModulatorsmedicineAnimalsHumansPosterior Horn CellNerve Fibers UnmyelinatedMultidisciplinaryExcitatory Postsynaptic PotentialsNeural InhibitionAnatomySpinal cordElectric StimulationRatsMice Inbred C57BLPosterior Horn Cellsmedicine.anatomical_structureNociceptionInhibitory Postsynaptic PotentialsSpinal Cordnervous systemHyperalgesiaHyperalgesiaNeuropathic painPyrazolesFemaleRimonabantmedicine.symptomNeurosciencepsychological phenomena and processesEndocannabinoidsScience
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