Search results for " subsets."

showing 10 items of 216 documents

Biology of gama delta T Cells in Tuberculosis and Malaria

2002

Tuberculosis and malaria remain the leading causes of mortality among human infectious diseases in the world. It is estimated that 3 to 5 million people die from tuberculosis and malaria each year. Although it is traditionally believed that CD4 and CD8 alphabeta T lymphocytes are mandatory for protective immune responses against Mycobacterium tuberculosis and Plasmodium falciparum (the ethiologic agents of tuberculosis and the most severe form of malaria, respectively), there is still incomplete understanding of the mechanisms of immune protection and of the causes of its failure in the affected patients. Several studies in humans and animal models have suggested that Vgamma9/Vdelta2 T cell…

TuberculosisT cellPlasmodium falciparumBiochemistryMycobacterium tuberculosisMiceImmune systemAntigenT-Lymphocyte Subsetsparasitic diseasesmedicineAnimalsHumansTuberculosisMalaria FalciparumMolecular BiologybiologyReceptors Antigen T-Cell gamma-deltaPlasmodium falciparumMycobacterium tuberculosisGeneral Medicinemedicine.diseasebiology.organism_classificationVirologyDisease Models Animalmedicine.anatomical_structureImmunologyMolecular MedicineCD8MalariaCurrent Molecular Medicine
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Single-cell RNA sequencing unveils the shared and the distinct cytotoxic hallmarks of human TCRVδ1 and TCRVδ2 γδ T lymphocytes

2019

γδ T lymphocytes represent ∼1% of human peripheral blood mononuclear cells and even more cells in most tissues of vertebrates. Although they have important anticancer functions, most current single-cell RNA sequencing (scRNA-seq) studies do not identify γδ T lymphocytes because their transcriptomes at the single-cell level are unknown. Here we show that high-resolution clustering of large scRNA-seq datasets and a combination of gene signatures allow the specific detection of human γδ T lymphocytes and identification of their T cell receptor (TCR)Vδ1 and TCRVδ2 subsets in large datasets from complex cell mixtures. In t -distributed stochastic neighbor embedding plots from blood and tumor sa…

[SDV.BIO]Life Sciences [q-bio]/BiotechnologyLymphocyte[SDV]Life Sciences [q-bio]CD8-Positive T-Lymphocytes[SDV.IMM.II]Life Sciences [q-bio]/Immunology/Innate immunityTranscriptome0302 clinical medicineT-Lymphocyte Subsets[SDV.BC.IC]Life Sciences [q-bio]/Cellular Biology/Cell Behavior [q-bio.CB]Cytotoxic T cellsingle-cell RNA-sequencingCells CulturedT-lymphocytesComputingMilieux_MISCELLANEOUSCancer0303 health sciences[SDV.MHEP] Life Sciences [q-bio]/Human health and pathologyMultidisciplinarygamma delta T lymphocyteReceptors Antigen T-Cell gamma-deltaCell biologyKiller Cells Naturalmedicine.anatomical_structurePNAS Plus030220 oncology & carcinogenesis[SDV.IMM]Life Sciences [q-bio]/Immunologyγδ T lymphocyteexpression des gènesAdultT cellBiologylymphocytePeripheral blood mononuclear cell03 medical and health sciencesAntigenséquençage arnr 16smedicineHumansCell Proliferation030304 developmental biologyhuman immunologyBase SequenceSequence Analysis RNAT-cell receptor[SDV.BIO] Life Sciences [q-bio]/BiotechnologyLeukocytes MononuclearImmunologic MemorytranscriptomeCD8[SDV.MHEP]Life Sciences [q-bio]/Human health and pathology
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Impact of viable CD45 cells infused on lymphocyte subset recovery after unrelated cord blood transplantation in children

2010

International audience; We studied lymphocyte recovery in 88 children who consecutively underwent unrelated cord blood transplantation for malignant (n = 64) or nonmalignant (n = 24) diseases. All children but 3 received myeloablative conditioning regimens with pretransplant antithymocyte globulin. Median age was 5.6 years (0.1-18 years) and median follow-up was 40 months (10-136 months). The median dose of infused viable CD45(+) cells (vCD45) was 3.35 × 10(7)/kg with a ratio infused vCD45/collected total nucleated cell at 0.46. Immunologic endpoints were: time to achieve CD3(+) >500 and 1500/mm(3), CD4(+) >500/mm(3), CD8(+) >250/mm(3), CD19(+) >200/mm(3), natural killer >100/mm(3). These e…

[SDV.MHEP.HEM] Life Sciences [q-bio]/Human health and pathology/HematologyLymphocyteMESH: Antigens CD/analysisCell Count[SDV.GEN] Life Sciences [q-bio]/GeneticsMESH : Child PreschoolGastroenterology0302 clinical medicineMESH : ChildMESH: Child[ SDV.MHEP.HEM ] Life Sciences [q-bio]/Human health and pathology/Hematology[ SDV.IMM ] Life Sciences [q-bio]/ImmunologyChildChildrenMESH : Lymphocyte Count0303 health sciencesMESH : Cell SurvivalbiologyIncidence (epidemiology)Graft Survival[SDV.MHEP.HEM]Life Sciences [q-bio]/Human health and pathology/HematologyHematology3. Good healthMESH: Hematologic Diseases/therapy Humansmedicine.anatomical_structureQuartileMESH: Cell SurvivalMESH: Cord Blood Stem Cell Transplantation/methodsLymphocytes recoveryChild PreschoolMESH : Immunophenotyping[SDV.IMM]Life Sciences [q-bio]/ImmunologyMESH: Infant KineticsCord Blood Stem Cell Transplantationmedicine.medical_specialtyMESH: Lymphocyte CountGlobulinMESH: ImmunophenotypingAdolescent[SDV.IMM] Life Sciences [q-bio]/ImmunologyCell SurvivalContext (language use)MESH : Hematologic Diseases/therapy HumansCD19Immunophenotyping03 medical and health sciencesMESH : Lymphocyte Subsets/cytologyAntigens CDInternal medicineMESH : AdolescentmedicineHumansLymphocyte CountMESH : Infant KineticsMESH : Antigens CD45* Cell Count030304 developmental biologyMESH: AdolescentTransplantation[SDV.GEN]Life Sciences [q-bio]/GeneticsUmbilical cord blood transplantationMESH : Graft Survival/immunologybusiness.industryUmbilical Cord Blood TransplantationMESH: Child PreschoolMESH : Cord Blood Stem Cell Transplantation/methodsInfantMESH : Antigens CD/analysisHematologic DiseasesLymphocyte SubsetsSurgeryMESH: Lymphocyte Subsets/cytologyKineticsbiology.proteinMESH: Antigens CD45* Cell CountLeukocyte Common Antigensbusiness[ SDV.GEN ] Life Sciences [q-bio]/GeneticsMESH: Graft Survival/immunologyCD8030215 immunology
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Immunotherapy targeting colon cancer stem cells

2010

In the last 10 years, cancer stem cells have interested the scientific community because this small tumorigenic population is also associated with tumor progression in human patients and specific targeting of cancer stem cells could be a strategy to eradicate cancers currently resistant to conventional therapy. Clinical studies have recently demonstrated that adding immune therapy to chemotherapy has survival benefits in comparison with chemotherapy alone that can sensitize tumors to immune cell-mediated killing (e.g., increasing sensitivity of tumor cells to subsequent cytotoxicity by T cells via upregulation of death receptors DR5 and Fas). However, loss of MHC molecules is often observe…

cancer stem cellsAdoptive cell transferT-LymphocytesT cellImmunologyBiologyCell therapyNK-92T-Lymphocyte SubsetsCancer stem cellmedicinegamma delta T cellsHumansImmunology and AllergyNK cellSettore MED/04 - Patologia Generalecolon cancer stem cellschemoresistanceReceptors Antigen T-Cell gamma-deltaSuicide geneKiller Cells Naturalmedicine.anatomical_structureOncologyColonic NeoplasmsImmunologyCancer cellNeoplastic Stem CellsImmunotherapygamma delta T cells cancer stem cells chemoresistance immunotherapy NK cellStem cellImmunotherapy
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Editorial: Understanding Gamma Delta T Cell Multifunctionality - Towards Immunotherapeutic Applications.

2020

Introduction: gd T cells have been characterized by the expression of a gd T cell receptor (TCR).When the gd TCR and the corresponding ab TCR were first discovered it was assumed that the corresponding cell types were likely to be functionally very similar. However, some 30 years later, we have realized that they are not. Unlike ab T cells, gd T cells (i) sense target antigens independent of MHC molecules; (ii) display NK-cell like innate reactivities, including killing of infected cells as well as microbes; (iii) are able to take up large particulates, including bacteria, and (iv) can act as professional antigen presenting cells. The “stress sensing” abilities of gd T cells have led to a g…

lcsh:Immunologic diseases. Allergy0301 basic medicineCell typeT cellImmunologygd T cells gd T cell receptor antigen recognition killing mechanisms infectious diseases tumor immunology.Major histocompatibility complexLigandsinfectious diseasesCommunicable DiseasesImmunotherapy Adoptiveγδ T cellsγδ T cell receptor03 medical and health sciences0302 clinical medicineAntineoplastic Agents ImmunologicalLymphocytes Tumor-InfiltratingAntigenAnti-Infective AgentsT-Lymphocyte SubsetsNeoplasmsmedicineImmunology and AllergyAnimalsHumanstumor immunologyGamma delta T cellAntigen-presenting cellSettore MED/04 - Patologia GeneralebiologyT-cell receptorReceptors Antigen T-Cell gamma-deltakilling mechanismsAcquired immune systemCell biologyantigen recognition030104 developmental biologymedicine.anatomical_structurePhenotypeEditorialbiology.proteinlcsh:RC581-607030215 immunologySignal TransductionFrontiers in immunology
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Azithromycin Differentially Alters TCR-Activated Helper T Cell Subset Phenotype and Effector Function

2020

In addition to their antibiotic activities, azithromycin (AZM) exhibits anti-inflammatory effects in various respiratory diseases. One of the potent anti-inflammatory mechanisms is through inhibition of CD4+ helper T (Th) cell effector function. However, their impact on specific Th subset is obscure. Herein, we demonstrate the cellular basis of phenotypic and functional alterations associated with Th subsets following AZM treatment in vitro. Using well-characterized Th subset specific chemokine receptors, we report significant suppression of T cell receptor (TCR)-stimulated hyperactivated CCR4+CXCR3+ (Th0) expansion compared to CCR4-CXCR3+ (Th1-like) and CCR4+CXCR3- (Th2-like) cells. Intere…

lcsh:Immunologic diseases. Allergy0301 basic medicineReceptors CCR4Receptors CXCR3Receptor expressionImmunologyReceptors Antigen T-CellBiologyCXCR303 medical and health sciencesChemokine receptorInterferon-gamma0302 clinical medicineDownregulation and upregulationCell MovementT-Lymphocyte SubsetsImmunology and AllergyHumansIFN-γInterleukin 4Cells CulturedOriginal Researchanti-inflammatoryazithromycinCD4+ helper T cellsCXCR3EffectorCell growthT-cell receptorIL-4apoptosisCell DifferentiationBacterial InfectionsTh1 CellsHealthy VolunteersCell biologyAnti-Bacterial Agents030104 developmental biologyCCR4Interleukin-4lcsh:RC581-607030215 immunologyFrontiers in Immunology
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IFI16 expression is related to selected transcription factors during B-cell differentiation

2015

The interferon-inducible DNA sensor IFI16 is involved in the modulation of cellular survival, proliferation, and differentiation. In the hematopoietic system, IFI16 is consistently expressed in the CD34+ stem cells and in peripheral blood lymphocytes; however, little is known regarding its regulation during maturation of B- and T-cells. We explored the role of IFI16 in normal B-cell subsets by analysing its expression and relationship with the major transcription factors involved in germinal center (GC) development and plasma-cell (PC) maturation.IFI16mRNA was differentially expressed in B-cell subsets with significant decrease inIFI16mRNA in GC and PCs with respect to naïve and memory subs…

lcsh:Immunologic diseases. AllergyAdultMaleXBP1Article SubjectLymphoid TissueTranscription FactorCellular differentiationPlasma CellsImmunologyB-Lymphocyte SubsetsBiologySettore MED/08 - Anatomia PatologicaAdult; B-Lymphocyte Subsets; B-Lymphocytes; Enzyme Activation; Female; Gene Expression Profiling; Germinal Center; Humans; Lymphoid Tissue; Male; NF-kappa B; Nuclear Proteins; Phosphoproteins; Plasma Cells; RNA Messenger; Transcription Factors; Cell Differentiation; Gene Expression Regulation; Immunology; Immunology and AllergyGene expressionImmunology; Immunology and AllergyHumansImmunology and AllergyRNA MessengerTranscription factorB-Lymphocyte SubsetsNuclear ProteinRegulation of gene expressionB-Lymphocyte SubsetB-LymphocytesRELBGene Expression ProfilingB-LymphocyteNF-kappa BNuclear ProteinsCell DifferentiationGeneral MedicineB-Cell DifferentiationPhosphoproteinsGerminal CenterMolecular biologyGene expression profilingEnzyme ActivationGene Expression RegulationPhosphoproteinImmunology interferon-inducible DNA sensor IFI16 B-Cell DifferentiationPlasma Cellinterferon-inducible DNA sensor IFI16Femalelcsh:RC581-607Transcription FactorsResearch ArticleHuman
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IL-12 Expands and Differentiates Human Vγ2Vδ2 T Effector Cells Producing Antimicrobial Cytokines and Inhibiting Intracellular Mycobacterial Growth

2019

While IL-12 plays a key role in differentiation of protective CD4+ Th1 response, little is known about mechanisms whereby IL-12 differentiates other T-cell populations. Published studies suggest that predominant Vγ2Vδ2 T cells in humans/nonhuman primates (NHP) are a fast-acting T-cell subset, with capacities to rapidly expand and produce Th1 and cytotoxic cytokines in response to phosphoantigen (E)-4-hydroxy-3-methyl-but-2-enyl pyrophosphate (HMBPP) produced by Mycobacterium tuberculosis (Mtb) or others. However, whether IL-12 signaling pathway mediates fast-acting and Th1 or anti-microbial features of Vγ2Vδ2 T cells remains poorly defined. Here, we show that IL-12, but not other IL-12 fami…

lcsh:Immunologic diseases. AllergyCells1.1 Normal biological development and functioningproliferationImmunologyLymphocyte ActivationV gamma 2V delta 2 T cellsVaccine Related03 medical and health sciencesPhosphatidylinositol 3-Kinases0302 clinical medicineRare DiseasesUnderpinning researchT-Lymphocyte SubsetsImmunology and AllergyTuberculosis2.1 Biological and endogenous factorsHumansAetiologyIntraepithelial LymphocytesCells Cultured030304 developmental biologyOriginal Researchanti-tuberculosis0303 health sciencesCulturedVγ2Vδ2 T cellsTumor Necrosis Factor-alphaInflammatory and immune systemCorrectionCell DifferentiationMycobacterium tuberculosisdifferentiationSTAT4 Transcription FactorTh1 CellsInterleukin-12Organophosphates3. Good healthInfectious DiseasesGood Health and Well BeingMedical MicrobiologyIL-12Infectionlcsh:RC581-607Proto-Oncogene Proteins c-akt030215 immunologySignal TransductionFrontiers in Immunology
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Control of Murine Cytomegalovirus Infection by γδ T Cells

2015

Infections with cytomegalovirus (CMV) can cause severe disease in immunosuppressed patients and infected newborns. Innate as well as cellular and humoral adaptive immune effector functions contribute to the control of CMV in immunocompetent individuals. None of the innate or adaptive immune functions are essential for virus control, however. Expansion of γδ T cells has been observed during human CMV (HCMV) infection in the fetus and in transplant patients with HCMV reactivation but the protective function of γδ T cells under these conditions remains unclear. Here we show for murine CMV (MCMV) infections that mice that lack CD8 and CD4 αβ-T cells as well as B lymphocytes can control a MCMV i…

lcsh:Immunologic diseases. AllergyMuromegalovirusAdoptive cell transferCD3 ComplexT cellImmunologyPopulation-MicrobiologyMiceImmune systemT-Lymphocyte SubsetsMedizinische FakultätVirologyGeneticsmedicineAnimalsCytotoxic T cellddc:610educationlcsh:QH301-705.5Molecular BiologyMice Knockouteducation.field_of_studybiologyvirus diseasesHerpesviridae InfectionsFlow CytometryAdoptive TransferVirologyHigh-Throughput Screening AssaysMice Inbred C57BLmedicine.anatomical_structurelcsh:Biology (General)Immunologybiology.proteinParasitologyAntibodyStem celllcsh:RC581-607CD8Research ArticlePLOS Pathogens
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Antigen-specific T cells and cytokines detection as useful tool for understanding immunity against zoonotic infections.

2012

Zoonoses include a broad range of diseases, that are becoming of great interest, due to the climate changing, that cause the adaptation of vectors to new niches and environments. Host immune responses play a crucial role in determining the outcome of infections, as documented by expansion of antigen-specific T cells during several zoonotic infections. Thus, understanding of the contribution of antigen-specific T-cell subsets in the host immune response is a powerful tool to evaluate the different immunological mechanisms involved in zoonotic infections and for the development of effective vaccines. In this paper we discuss the role of T cells in some eukaryotic and prokaryotic infectious mo…

lcsh:Immunologic diseases. AllergyNematodaT-LymphocytesImmunologyReview ArticleAdaptive ImmunityBiologyHost-Parasite InteractionsImmune systemT-Lymphocyte SubsetsAntigen specificImmunityZoonosesAnimalsHumansImmunology and AllergyAntigensTh1-Th2 BalanceZoonoses antigen specific T-cells animal immunology.VaccinesBacteriaZoonotic InfectionGeneral MedicineAcquired immune systemVirologyImmunity InnateHost-Pathogen InteractionsImmunologyCytokinesAdaptationlcsh:RC581-607
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