Search results for "hemic and immune systems"

showing 10 items of 340 documents

EBV-Induced Gene 3 Transcription Is Induced by TLR Signaling in Primary Dendritic Cells via NF-κB Activation

2005

Abstract The EBV-induced gene 3 (EBI3) is expressed in dendritic cells (DCs) and part of the cytokine IL-27 that controls Th cell development. However, its regulated expression in DCs is poorly understood. In the present study we demonstrate that EBI3 is expressed in splenic CD8−, CD8+, and plasmacytoid DC subsets and is induced upon TLR signaling. Cloning and functional analysis of the EBI3 promoter using in vivo footprinting and mutagenesis showed that stimulation via TLR2, TLR4, and TLR9 transactivated the promoter in primary DCs via NF-κB and Ets binding sites at −90 and −73 bp upstream of the transcriptional start site, respectively. Furthermore, we observed that NF-κB p50/p65 and PU.1…

RNA Capsmedicine.medical_treatmentDNA Mutational AnalysisMolecular Sequence DataImmunologyAntigen-Presenting CellsReceptors Cell SurfaceBiologyCell LineMinor Histocompatibility AntigensJurkat CellsMiceCell Line TumorGene expressionmedicineAnimalsHumansImmunology and AllergyReceptors CytokinePromoter Regions GeneticGlycoproteinsMice KnockoutMembrane GlycoproteinsInnate immune systemBase SequenceToll-Like ReceptorsHEK 293 cellsNF-kappa BTLR9hemic and immune systemsEBI3Dendritic CellsMolecular biologyToll-Like Receptor 2Up-RegulationMice Inbred C57BLToll-Like Receptor 4Protein SubunitsTLR2CytokineGene Expression RegulationToll-Like Receptor 9NIH 3T3 CellsTLR4Protein BindingSignal TransductionThe Journal of Immunology
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Second-generation Langerhans cells originating from epidermal precursors are essential for CD8+ T cell priming.

2014

Abstract In vivo studies questioned the ability of Langerhans cells (LCs) to mediate CD8+ T cell priming. To address this issue, we used intradermal immunization with plasmid DNA, a system in which activation of CD8+ T cells depends on delayed kinetics of Ag presentation. We found that dendritic cells (DCs) located in the skin at the time of immunization have limited ability to activate CD8+ T cells. This activity was mediated by a second generation of DCs that differentiated in the skin several days after immunization, as well as by lymph node–resident DCs. Intriguingly, CD8+ T cell responses were not affected following treatment with clodronate liposomes, immunization of CCR2−/− mice, or …

Receptors CCR2T cellImmunologyPriming (immunology)CD11cchemical and pharmacologic phenomenaBiologyCD8-Positive T-LymphocytesLymphocyte ActivationMiceImmune systemGiant Cells LanghansmedicineImmunology and AllergyCytotoxic T cellAnimalsSkinMice KnockoutChemokine CCL20integumentary systemhemic and immune systemsCell DifferentiationDendritic CellsMolecular biologyCD11c AntigenCCL20Mice Inbred C57BLmedicine.anatomical_structureImmunologyIntercellular Signaling Peptides and ProteinsClodronic AcidCD8Ex vivoHeparin-binding EGF-like Growth FactorPlasmidsJournal of immunology (Baltimore, Md. : 1950)
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Crosstalk of regulatory T cells and tolerogenic dendritic cells prevents contact allergy in subjects with low zone tolerance

2012

Background Allergic contact dermatitis is one of the most common occupational diseases. A main protective mechanism in those who do not develop allergic contact dermatitis is tolerance induction by repeated exposure to low doses of contact allergen, which is termed low zone tolerance (LZT). The mechanisms that determine the tolerance induction in subjects with LZT are still elusive. Objective We performed analysis of the role of CD4 + CD25 + forkhead box protein 3 (FOXP3)–positive regulatory T (Treg) cells and dendritic cells (DCs) in mice with LZT. Methods Mechanisms of tolerance induction were analyzed in a murine model of LZT by using FOXP3 and IL-10 reporter mice, as well as mice that a…

Receptors CCR7Adoptive cell transferImmunologyMice Transgenicchemical and pharmacologic phenomenaCell CommunicationBiologyLymphocyte ActivationT-Lymphocytes RegulatoryMiceImmune ToleranceAnimalsImmunology and AllergyIL-2 receptorInterleukin-2 Receptor alpha SubunitFOXP3Forkhead Transcription Factorshemic and immune systemsDendritic CellsDendritic cellCD11c AntigenInterleukin-10Tolerance inductionInterleukin 10CTLA-4Dermatitis Allergic ContactImmunologyCD8Journal of Allergy and Clinical Immunology
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Regulatory T cells selectively preserve immune privilege of self-antigens during viral central nervous system infection.

2012

Abstract Regulatory T cells (Tregs) are important for the attenuation of immune reactions. During viral CNS infections, however, an indiscriminate maintenance of CNS immune privilege through Treg-mediated negative regulation could prevent autoimmune sequelae but impair the control of viral replication. We analyzed in this study the impact of Tregs on the development of acute viral encephalomyelitis, T cell-mediated antiviral protection, and prevention of CNS autoimmunity following intranasal infection with the gliatropic mouse hepatitis virus strain A59. To assess the contribution of Tregs in vivo, we specifically depleted CD4+Foxp3+ T cells in a diphtheria toxin-dependent manner. We found …

Receptors CXCR3T cellImmunologychemical and pharmacologic phenomenaAutoimmunityBiologyCD8-Positive T-Lymphocytesmedicine.disease_causeCXCR3Lymphocyte ActivationAutoantigensT-Lymphocytes RegulatoryLymphocyte DepletionAutoimmunity03 medical and health sciencesMice0302 clinical medicineCentral Nervous System InfectionsImmune privilegeImmunitymedicineImmunology and AllergyAnimalsHumansEncephalomyelitisAdministration Intranasal030304 developmental biologyCell Proliferation0303 health sciencesImmunity CellularMice Inbred BALB CMurine hepatitis virusFOXP3hemic and immune systemsForkhead Transcription Factors3. Good healthmedicine.anatomical_structureViral replicationImmunologyAcute DiseaseCD4 AntigensLymph NodesCoronavirus InfectionsCD8030215 immunologyJournal of immunology (Baltimore, Md. : 1950)
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Translocation of Zymomonas mobilis pyruvate decarboxylase to periplasmic compartment for production of acetaldehyde outside the cytosol

2019

Abstract Acetaldehyde, a valuable commodity chemical, is a volatile inhibitory byproduct of aerobic fermentation in Zymomonas mobilis and in several other microorganisms. Attempting to improve acetaldehyde production by minimizing its contact with the cell interior and facilitating its removal from the culture, we engineered a Z. mobilis strain with acetaldehyde synthesis reaction localized in periplasm. For that, the pyruvate decarboxylase (PDC) was transferred from the cell interior to the periplasmic compartment. This was achieved by the construction of a Z. mobilis Zm6 PDC‐deficient mutant, fusion of PDC with the periplasmic signal sequence of Z. mobilis gluconolactonase, and the follow…

Recombinant Fusion Proteinslcsh:QR1-502macromolecular substancesAcetaldehydeMicrobiologyZymomonas mobilislcsh:Microbiologychemistry.chemical_compoundperiplasmZymomonasbiologypyruvate decarboxylaseZymomonas mobilisAcetaldehydeacetaldehyde productionhemic and immune systemsPeriplasmic spaceCompartment (chemistry)Original Articlesbiology.organism_classificationFusion proteinAerobiosisProtein TransportBiochemistrychemistryMetabolic EngineeringFermentationGluconolactonaseFermentationOriginal ArticlePyruvate decarboxylaseMicrobiologyOpen
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Critical Regulation of Early Th17 Cell Differentiation by Interleukin-1 Signaling

2009

SummaryT helper (Th) 17 cells have been recently discovered in both mouse and human. Here we show that interleukin-1 (IL-1) signaling on T cells is critically required for the early programming of Th17 cell lineage and Th17 cell-mediated autoimmunity. IL-1 receptor1 expression in T cells, which was induced by IL-6, was necessary for the induction of experimental autoimmune encephalomyelitis and for early Th17 cell differentiation in vivo. Moreover, IL-1 signaling in T cells was required in dendritic cell-mediated Th17 cell differentiation from naive or regulatory precursors and IL-1 synergized with IL-6 and IL-23 to regulate Th17 cell differentiation and maintain cytokine expression in effe…

Regulation of gene expressionEffectorCellular differentiationExperimental autoimmune encephalomyelitisImmunologychemical and pharmacologic phenomenahemic and immune systemsBiologymedicine.diseaseMolecular biologyCell biologyInfectious DiseasesCELLIMMUNOCell polaritymedicineImmunology and AllergyInterleukin 17Signal transductionMOLIMMUNOTranscription factorImmunity
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Large scale preparation of human MHC class II+ integrin beta(1)+ Tregs.

2010

Abstract The human CD4 + CD25 + FoxP3 + regulatory T cell population (Tregs) contains both MHC class II + and MHC class II − cells. MHC class II + Tregs belong to the integrin α 4 β 1 + subpopulation and exclusively execute contact-dependent suppressive activity. Here we present a method optimized for isolation of these MHC class II expressing Tregs from large leukaphereses products using magnetic microbeads that achieves a reproducible purity of more than 90% and enables the use of this small-sized Treg population in pre-clinical application and basic research.

Regulatory T cellImmunologyPopulationIntegrinchemical and pharmacologic phenomenaIntegrin alpha4beta1T-Lymphocytes RegulatoryT-Lymphocyte SubsetsmedicineImmune ToleranceImmunology and AllergyHumansIL-2 receptorLeukapheresiseducationCells CulturedMHC class IIeducation.field_of_studybiologyImmunomagnetic SeparationHistocompatibility Antigens Class IIInterleukin-2 Receptor alpha SubunitFOXP3hemic and immune systemsForkhead Transcription FactorsT lymphocyteMHC restrictionFlow CytometryCell biologyHigh-Throughput Screening Assaysmedicine.anatomical_structureImmunologyCD4 Antigensbiology.proteinJournal of immunological methods
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Tumor cells convert immature myeloid dendritic cells into TGF-β–secreting cells inducing CD4+CD25+ regulatory T cell proliferation

2005

The mechanisms through which regulatory T cells accumulate in lymphoid organs of tumor-bearing hosts remain elusive. Our experiments indicate that the accumulation of CD4+CD25+ regulatory T cells (T reg cells) expressing FoxP3 and exhibiting immunosuppressive function originates from the proliferation of naturally occurring CD25+ T cells and requires signaling through transforming growth factor (TGF)–β receptor II. During tumor progression, a subset of dendritic cells (DCs) exhibiting a myeloid immature phenotype is recruited to draining lymph nodes. This DC subset selectively promotes the proliferation of T reg cells in a TGF-β–dependent manner in mice and rats. Tumor cells are necessary a…

Regulatory T cellImmunologychemical and pharmacologic phenomenaBiologyT-Lymphocytes RegulatoryArticleMiceInterleukin 21Transforming Growth Factor betaCell Line TumorNeoplasmsmedicineAnimalsImmunology and AllergyCytotoxic T cellIL-2 receptorAntigen-presenting cellCell ProliferationDNA PrimersInterleukin 3Reverse Transcriptase Polymerase Chain ReactionCell DifferentiationForkhead Transcription FactorsRats Inbred Strainshemic and immune systemsDendritic CellsNatural killer T cellImmunohistochemistryMolecular biologyRatsCell biologymedicine.anatomical_structureBromodeoxyuridineInterleukin 12Receptors Transforming Growth Factor betaSignal TransductionJournal of Experimental Medicine
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Increased regulatory T-cell frequencies in patients with advanced melanoma correlate with a generally impaired T-cell responsiveness and are restored…

2009

Naturally occurring CD4(+) CD25(+) regulatory T-cell (Treg) activity is assumed to facilitate tumor development and progression. To elucidate the possible role of Tregs in the course of melanoma progression, we analysed the frequency of Tregs in the peripheral blood of patients at melanoma stages I-IV and in patients at melanoma stage IV that underwent dendritic cell (DC)-based immunotherapy. Using CD25, Foxp3, CD127 and HLA-DR as Treg associated markers, we observed increased Treg frequencies in patients at the late melanoma stage (stage IV) when compared to healthy donors. Accumulation of Tregs in patients with progressed melanoma correlated with a general reduction of T-cell responsivene…

Regulatory T cellbusiness.industryT cellmedicine.medical_treatmentMelanomaFOXP3hemic and immune systemschemical and pharmacologic phenomenaDermatologyImmunotherapyDendritic cellmedicine.diseaseBiochemistrymedicine.anatomical_structureTumor progressionImmunologymedicineIL-2 receptorbusinessMolecular BiologyExperimental Dermatology
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Mast cells counteract regulatory T-cell suppression through interleukin-6 and OX40/OX40L axis toward Th17-cell differentiation

2009

Abstract The development of inflammatory diseases implies inactivation of regulatory T (Treg) cells through mechanisms that still are largely unknown. Here we showed that mast cells (MCs), an early source of inflammatory mediators, are able to counteract Treg inhibition over effector T cells. To gain insight into the molecules involved in their interplay, we set up an in vitro system in which all 3 cellular components were put in contact. Reversal of Treg suppression required T cell–derived interleukin-6 (IL-6) and the OX40/OX40L axis. In the presence of activated MCs, concomitant abundance of IL-6 and paucity of Th1/Th2 cytokines skewed Tregs and effector T cells into IL-17–producing T cel…

Regulatory T cellmedicine.medical_treatmentCellular differentiationImmunologyPriming (immunology)chemical and pharmacologic phenomenaMice TransgenicMast cell; T regulatory cell; Immune responseBiologyLymphocyte ActivationT-Lymphocytes RegulatoryBiochemistryImmune toleranceMiceMice CongenicmedicineImmune ToleranceMast CellT regulatory cellImmune responseCells CulturedCell ProliferationAnimalInterleukin-6Experimental autoimmune encephalomyelitisInterleukin-17hemic and immune systemsCell DifferentiationT lymphocyteT-Lymphocytes Helper-InducerHematologyCell BiologyReceptors OX40medicine.diseaseCell biologyMice Inbred C57BLmedicine.anatomical_structureCytokineImmunologyAnimals; Cell Differentiation; Cell Proliferation; Cells Cultured; Immune Tolerance; Interleukin-17; Interleukin-6; Lymphocyte Activation; Mast Cells; Membrane Glycoproteins; Mice; Mice Congenic; Mice Inbred C57BL; Mice Transgenic; Receptors OX40; Signal Transduction; T-Lymphocytes Helper-Inducer; T-Lymphocytes Regulatory; Tumor Necrosis Factors; Hematology; Biochemistry; Cell Biology; ImmunologyInterleukin 17Membrane GlycoproteinTumor Necrosis FactorSignal Transduction
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