Search results for "T-lymphocytes"

showing 10 items of 1380 documents

Down-Regulation of CD62L Shedding in T Cells by CD39+ Regulatory T Cells Leads to Defective Sensitization in Contact Hypersensitivity Reactions

2016

Injection of regulatory T cells (Tregs) followed by sensitization with 2,4,6-trinitrochlorobenzene induced a transient increase in size and cellularity of skin-draining lymph nodes (LNs) in mice. This led us to hypothesize that Tregs may affect the trafficking of T cells from and to peripheral LNs. Two to three hours after sensitization, we found fewer CD8+ T cells expressing CD62L in LNs compared with untreated controls. Injection of wild-type Tregs prevented this down-regulation of CD62L. In contrast, Tregs devoid of the adenosine triphosphate (ATP)-degrading ecto-enzyme CD39 were unable to do so. As for the mechanism of CD62L regulation, we found that ATP, which is released in skin upon …

0301 basic medicineRegulatory T cellBlotting WesternMedizinDown-Regulationchemical and pharmacologic phenomenaDermatologyT-Lymphocytes RegulatoryBiochemistryArticleMice03 medical and health scienceschemistry.chemical_compoundAdenosine Triphosphate0302 clinical medicineImmune systemDownregulation and upregulationAntigenAntigens CDReference ValuesmedicineAnimalsImmunologic FactorsL-SelectinMolecular BiologyCells CulturedSensitizationintegumentary systemChemistryApyrasehemic and immune systemsCell BiologyDendritic cellFlow CytometryCell biologyMice Inbred C57BL030104 developmental biologymedicine.anatomical_structureEpidermal CellsDermatitis Allergic ContactImmunologyImmunizationLymph NodesEpidermisAdenosine triphosphateCD8030215 immunologyJournal of Investigative Dermatology
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Combined immunotherapy: CTLA-4 blockade potentiates anti-tumor response induced by transcutaneous immunization.

2017

Abstract Background The epidermal application of the Toll Like Receptor 7 agonist imiquimod and a T-cell peptide epitope (transcutaneous immunization, TCI) mediates systemic peptide-specific cytotoxic T-cell (CTL) responses and leads to tumor protection in a prophylactic tumor setting. However, it does not accomplish memory formation or permanent defiance of tumors in a therapeutic set-up. As a distinct immunologic approach, CTLA-4 blockade augments systemic immune responses and has shown long-lasting effects in preclinical experiments as well as in clinical trials. Objective The study investigates the vaccination capacity of TCI in combination with the checkpoint inhibitor CTLA-4 in matter…

0301 basic medicineSkin NeoplasmsOvalbuminmedicine.medical_treatmentMelanoma Experimentalchemical and pharmacologic phenomenaDermatologyBiochemistryT-Lymphocytes RegulatoryEpitope03 medical and health sciencesMice0302 clinical medicineImmune systemAntineoplastic Agents ImmunologicalAdjuvants ImmunologicmedicineCytotoxic T cellAnimalsHumansCTLA-4 AntigenMolecular BiologyImiquimodMembrane Glycoproteinsbusiness.industryMelanomahemic and immune systemsDrug SynergismTLR7Immunotherapymedicine.diseaseFlow CytometryXenograft Model Antitumor AssaysPeptide FragmentsMice Inbred C57BLCTL*030104 developmental biologyToll-Like Receptor 7CTLA-4030220 oncology & carcinogenesisImmunologyAminoquinolinesImmunotherapybusinessImmunologic MemoryT-Lymphocytes CytotoxicJournal of dermatological science
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Transcutaneous immunization with a novel imiquimod nanoemulsion induces superior T cell responses and virus protection

2017

Abstract Background Transcutaneous immunization (TCI) is a novel vaccination strategy utilizing the skin associated lymphatic tissue to induce immune responses. TCI using a cytotoxic T lymphocyte (CTL) epitope and the Toll-like receptor 7 (TLR7) agonist imiquimod mounts strong CTL responses by activation and maturation of skin-derived dendritic cells (DCs) and their migration to lymph nodes. However, TCI based on the commercial formulation Aldara only induces transient CTL responses that needs further improvement for the induction of durable therapeutic immune responses. Objective Therefore we aimed to develop a novel imiquimod solid nanoemulsion (IMI-Sol) for TCI with superior vaccination …

0301 basic medicineSkin NeoplasmsT cellImiquimodDermatologyLymphocytic ChoriomeningitisAdministration CutaneousBiochemistryEpitopeMajor Histocompatibility ComplexEpitopesMice03 medical and health sciences0302 clinical medicineImmune systemCell MovementAnimalsHumansLymphocytic choriomeningitis virusMedicineCytotoxic T cellMolecular BiologySkinMice KnockoutImiquimodMembrane Glycoproteinsbusiness.industryVaccinationTLR7Flow CytometryMice Inbred C57BLDisease Models AnimalCTL*030104 developmental biologymedicine.anatomical_structureToll-Like Receptor 7Langerhans Cells030220 oncology & carcinogenesisMyeloid Differentiation Factor 88ImmunologyAminoquinolinesEmulsionsbusinessCD8Signal TransductionT-Lymphocytes Cytotoxicmedicine.drugJournal of Dermatological Science
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Regulating T-cell differentiation through the polyamine spermidine

2021

Background The cross-talk between the host and its microbiota plays a key role in the promotion of health. The production of metabolites such as polyamines by intestinal-resident bacteria is part of this symbiosis shaping host immunity. The polyamines putrescine, spermine, and spermidine are abundant within the gastrointestinal tract and might substantially contribute to gut immunity. Objective We aimed to characterize the polyamine spermidine as a modulator of T-cell differentiation and function. Methods Naive T cells were isolated from wild-type mice or cord blood from healthy donors and submitted to polarizing cytokines, with and without spermidine treatment, to evaluate CD4+ T-cell diff…

0301 basic medicineSpermine oxidaseSpermidineImmunologySpermineBiologyT-Lymphocytes RegulatoryOrnithine decarboxylaseMice03 medical and health scienceschemistry.chemical_compound0302 clinical medicineAnimalsImmunology and AllergyImmunity MucosalMice KnockoutMice Inbred BALB CFOXP3Cell DifferentiationDendritic cellColitisCell biologySpermidine030104 developmental biologychemistryCardiovascular and Metabolic DiseasesPutrescinePolyamine030215 immunology
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Imbalance of immunological synapse-kinapse states reflects tumor escape to immunity in glioblastoma

2018

Since the proper activation of T cells requires the physical interaction with target cells through the formation of immunological synapses (IS), an alteration at this level could be a reason why tumors escape the immune response. As part of their life cycle, it is thought that T cells alternate between a static phase, the IS, and a dynamic phase, the immunological kinapse (IK), depending on high or low antigen sensing. Our investigation performed in tissue samples of human glioma shows that T cells are able to establish synapsing interactions not only with glioma tumorigenic cells, but also with stromal myeloid cells. Particularly, the IS displaying a T cell receptor-rich (TCR-rich) central…

0301 basic medicineStromal cellCD3 ComplexImmunological SynapsesT-LymphocytesT cellAntigen-Presenting CellsImmunological synapse03 medical and health sciencesImaging Three-DimensionalImmune systemAntigenGliomaTumor MicroenvironmentmedicineHumansMyeloid CellsBrain NeoplasmsChemistryGliomaGeneral Medicinemedicine.diseaseImmunological SynapsesCell biology030104 developmental biologymedicine.anatomical_structureTechnical AdvanceTumor EscapeTumor EscapeGlioblastomaJCI Insight
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Lymph node - an organ for T-cell activation and pathogen defense.

2016

The immune system is a multicentered organ that is characterized by intimate interactions between its cellular components to efficiently ward off invading pathogens. A key constituent of this organ system is the distinct migratory activity of its cellular elements. The lymph node represents a pivotal meeting point of immune cells where adaptive immunity is induced and regulated. Additionally, besides barrier tissues, the lymph node is a critical organ where invading pathogens need to be eliminated in order to prevent systemic distribution of virulent microbes. Here, we explain how the lymph node is structurally and functionally organized to fulfill these two critical functions - pathogen de…

0301 basic medicineT cellImmunologyAntigen presentationContext (language use)BiologyAdaptive ImmunityCD8-Positive T-LymphocytesLymphocyte Activation03 medical and health sciences0302 clinical medicineImmune systemCell MovementmedicineLymph node stromal cellImmunology and AllergyCytotoxic T cellAnimalsHumansLymph nodeAntigens ViralAntigen PresentationDendritic CellsAcquired immune system030104 developmental biologymedicine.anatomical_structureVirus DiseasesImmunologyHost-Pathogen InteractionsLymph Nodes030215 immunologyImmunological reviews
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Meningeal γδ T cell-derived IL-17 controls synaptic plasticity and short-term memory

2019

The notion of "immune privilege" of the brain has been revised to accommodate its infiltration, at steady state, by immune cells that participate in normal neurophysiology. However, the immune mechanisms that regulate learning and memory remain poorly understood. Here, we show that noninflammatory interleukin-17 (IL-17) derived from a previously unknown fetal-derived meningeal-resident γδ T cell subset promotes cognition. When tested in classical spatial learning paradigms, mice lacking γδ T cells or IL-17 displayed deficient short-term memory while retaining long-term memory. The plasticity of glutamatergic synapses was reduced in the absence of IL-17, resulting in impaired long-term poten…

0301 basic medicineT cellT-LymphocytesImmunologyCellShort-term memoryBiologyArticle03 medical and health sciencesGlutamatergicMice0302 clinical medicineImmune systemMeningesImmune privilegemedicineAnimalsMice KnockoutNeuronal PlasticityInterleukin-17Long-term potentiationGeneral MedicineMice Inbred C57BL030104 developmental biologymedicine.anatomical_structureMemory Short-TermSynaptic plasticityNeuroscience030217 neurology & neurosurgery
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Combined Analysis of Antigen Presentation and T-cell Recognition Reveals Restricted Immune Responses in Melanoma.

2018

Abstract The quest for tumor-associated antigens (TAA) and neoantigens is a major focus of cancer immunotherapy. Here, we combine a neoantigen prediction pipeline and human leukocyte antigen (HLA) peptidomics to identify TAAs and neoantigens in 16 tumors derived from seven patients with melanoma and characterize their interactions with their tumor-infiltrating lymphocytes (TIL). Our investigation of the antigenic and T-cell landscapes encompassing the TAA and neoantigen signatures, their immune reactivity, and their corresponding T-cell identities provides the first comprehensive analysis of cancer cell T-cell cosignatures, allowing us to discover remarkable antigenic and TIL similarities b…

0301 basic medicineT cellmedicine.medical_treatmentT-LymphocytesAntigen presentationHuman leukocyte antigenMice SCIDBiologyArticle03 medical and health sciencesMiceImmune systemLymphocytes Tumor-InfiltratingAntigenCancer immunotherapyAntigens NeoplasmMice Inbred NODmedicineTumor Cells CulturedAnimalsHumansMelanomaAntigen Presentationintegumentary systemMelanomaHistocompatibility Antigens Class Imedicine.diseaseXenograft Model Antitumor Assays3. Good health030104 developmental biologymedicine.anatomical_structureOncologyCancer cellCancer researchCancer discovery
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Guidelines for the use of flow cytometry and cell sorting in immunological studies

2017

The marriage between immunology and cytometry is one of the most stable and productive in the recent history of science. A rapid search in PubMed shows that, as of July 2017, using “flow cytometry immunology” as a search term yields more than 68 000 articles, the first of which, interestingly, is not about lymphocytes. It might be stated that, after a short engagement, the exchange of the wedding rings between immunology and cytometry officially occurred when the idea to link fluorochromes to monoclonal antibodies came about. After this, recognizing different types of cells became relatively easy and feasible not only by using a simple fluorescence microscope, but also by a complex and some…

0301 basic medicineT-LymphocytesCell SeparationT cell precursors0302 clinical medicineImmunophenotypingHuman lymphopoiesis[ SDV.IMM ] Life Sciences [q-bio]/ImmunologyImmunology and AllergyNon-U.S. Gov'tImmunologic Techniquemedicine.diagnostic_testResearch Support Non-U.S. Gov'tvirus diseaseshemic and immune systemsFalse Positive ReactionCell sortingFlow Cytometrynatural killer and innate lymphoid cells differentiation3. Good healthResearch Design[SDV.IMM]Life Sciences [q-bio]/ImmunologyHumanQuality Controlmedicine.drug_classImmunologyAnimals; Cell Proliferation; Cell Separation; DNA; False Positive Reactions; Flow Cytometry; Humans; Immunophenotyping; Quality Control; RNA; Research Design; Software; T-Lymphocytes; Guidelines as Topic; Immunologic Techniques; Immunology and Allergy; Immunologychemical and pharmacologic phenomenaGuidelines as TopicComputational biologyBiologyMonoclonal antibodyResearch SupportArticleFlow cytometryImmunophenotypingN.I.H.03 medical and health sciencesImmune systemImmunologic TechniqueResearch Support N.I.H. Extramuralmedicineearly lymphoid progenitorsJournal ArticleAnimalsHumansMass cytometryFalse Positive ReactionsImmunology and Allergy; Immunology; Flow cytometryIMUNOLOGIACell ProliferationAnimalExtramuralB cell ontogenyDNA030104 developmental biologyT-LymphocyteImmunologic TechniquesRNACytometrySoftware030215 immunologyEuropean Journal of Immunology
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IRF8 Transcription Factor Controls Survival and Function of Terminally Differentiated Conventional and Plasmacytoid Dendritic Cells, Respectively

2016

International audience; Interferon regulatory factor-8 (IRF8) has been proposed to be essential for development of monocytes, plasmacytoid dendritic cells (pDCs) and type 1 conventional dendritic cells (cDC1s) and remains highly expressed in differentiated DCs. Transcription factors that are required to maintain the identity of terminally differentiated cells are designated `' terminal selectors.'' Using BM chimeras, conditional Irf8(fl/fl) mice and various promotors to target Cre recombinase to different stages of monocyte and DC development, we have identified IRF8 as a terminal selector of the cDC1 lineage controlling survival. In monocytes, IRF8 was necessary during early but not late d…

0301 basic medicineT-LymphocytesCellular differentiationImmunologyCre recombinasePlasmacytoid dendritic cellBiologyMonocytesMice03 medical and health sciences0302 clinical medicineInterferonmedicineAnimalsImmunology and AllergyPromoter Regions GeneticMonocyteCell DifferentiationDendritic CellsDendritic cellCell biologyMice Inbred C57BL030104 developmental biologyInfectious Diseasesmedicine.anatomical_structureInterferon Regulatory FactorsInterferon Type ICancer research[SDV.IMM]Life Sciences [q-bio]/ImmunologyIRF8Transcription Factors030215 immunologyIRF4medicine.drugImmunity
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