Search results for " cell transfer"

showing 10 items of 116 documents

Peroxisome proliferator-activated receptor alpha deficiency impairs regulatory T cell functions: Possible application in the inhibition of melanoma t…

2016

International audience; Regulatory T (Treg) cells are important to induce and maintain immunological self-tolerance. Although the progress accomplished in understanding the functional mechanism of Treg cells, intracellular molecules that control the mechanisms of their suppressive capacity are still on investigation. The present study showed that peroxisome proliferator-activated receptor-alpha deficiency impaired the suppressive activity of Treg cells on CD4(+)CD25(-) and CD8(+) T cell proliferation. In Treg cells, PPARα gene deletion also induced a decrease of migratory abilities, and downregulated the expression of chemokine receptors (CCR-4, CCR-8 and CXCR-4) and p27(KIP1) mRNA. Treg ce…

0301 basic medicineMaleAdoptive cell transferMESH: Tumor BurdenB16 melanoma tumorMelanoma ExperimentalMESH: T-Lymphocyte SubsetsCD4(+)CD25(+) regulatory T cellsBiochemistryMESH: Mice KnockoutImmunotherapy AdoptiveT-Lymphocytes RegulatoryPPARαMESH : T-Lymphocytes RegulatoryCell MovementT-Lymphocyte SubsetsMESH: Reverse Transcriptase Polymerase Chain ReactionMESH : Cell ProliferationMESH : Cell MovementMESH: AnimalsIL-2 receptorMESH: PPAR alphaMESH: Cell MovementCells CulturedMice KnockoutMESH : Melanoma ExperimentalbiologyMESH : Tumor BurdenReverse Transcriptase Polymerase Chain ReactionMESH : Reverse Transcriptase Polymerase Chain ReactionFOXP3hemic and immune systemsGeneral MedicineMESH: Gene Expression Regulation Neoplastic3. Good healthTumor BurdenMESH: Melanoma ExperimentalDNA-Binding ProteinsGene Expression Regulation Neoplasticmedicine.anatomical_structureMESH: Immunotherapy AdoptiveReceptors ChemokineMESH : DNA-Binding ProteinsMESH: Cells Culturedmedicine.medical_specialtyMESH : Receptors ChemokineMESH: Cell Line TumorRegulatory T cellMESH : Gene Expression Regulation NeoplasticT cellMESH : MaleMESH : PPAR alphachemical and pharmacologic phenomenaMESH : Mice Inbred C57BLMESH : Clonal Anergy03 medical and health sciencesMESH: Mice Inbred C57BLInternal medicineMESH: Cell ProliferationCell Line TumorMESH : Cells CulturedmedicineAnimals[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular BiologyPPAR alpha[ SDV.BBM ] Life Sciences [q-bio]/Biochemistry Molecular BiologyCell ProliferationClonal AnergyPerforinMESH : Cell Line TumorMESH: T-Lymphocytes RegulatoryMolecular biologyMESH: MaleMESH : T-Lymphocyte SubsetsGranzyme BMice Inbred C57BL030104 developmental biologyEndocrinologyPerforinMESH: Clonal Anergybiology.proteinMESH : Mice KnockoutMESH : AnimalsMESH: Receptors ChemokineCD8MESH: DNA-Binding ProteinsMESH : Immunotherapy Adoptive
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Myeloid cells do not contribute to gender-dependent differences in disease outcome in murine cutaneous leishmaniasis.

2015

Gender-associated differences in the outcome of infections are well known. Apart from behavior-released differences in their incidence, immunological factors also contribute to disease outcome. The underlying mechanisms are often unknown. Here, we show that in murine experimental leishmaniasis, female mice develop larger skin lesions that harbor significantly more parasites, exhibit increased parasite dissemination to visceral organs associated with a shift towards T helper (Th) 2 immunity with increased levels of IL-4. Antigen presenting cells (APC) responsible for T cell priming, such as macrophages or dendritic cells, were not involved in the process. Additionally, in adoptive transfer e…

0301 basic medicineMaleAdoptive cell transferMyeloidStromal cellT cellImmunologyLeishmaniasis CutaneousBiology03 medical and health sciencesMice0302 clinical medicineImmune systemTh2 CellsCutaneous leishmaniasismedicineAnimalsHumansCell LineageMyeloid CellsAntigen-presenting cellTh1-Th2 BalanceCells CulturedCell DifferentiationDendritic cellmedicine.diseaseHormonesMice Inbred C57BLDisease Models Animal030104 developmental biologymedicine.anatomical_structureImmunologyDisease ProgressionFemaleSexDisease SusceptibilityInterleukin-4Stromal Cells030215 immunologyCellular immunology
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Transfer of minimally manipulated CMV-specific T cells from stem cell or third-party donors to treat CMV infection after allo-HSCT.

2017

Cytomegalovirus (CMV) infection is a common, potentially life-threatening complication following allogeneic hematopoietic stem cell transplantation (allo-HSCT). We assessed prospectively the safety and efficacy of stem cell-donor-or third-party-donor-derived CMV-specific T cells for the treatment of persistent CMV infections after allo-HSCT in a phase I/IIa trial. Allo-HSCT patients with drugrefractory CMV infection and lacking virus-specific T cells were treated with a single dose of ex vivo major histocompatibility complex-Streptamer-isolated CMV epitope-specific donor T cells. Forty-four allo-HSCT patients receiving a T-cell-replete (D+ repl; n = 28) or T-cell-depleted (D+ depl; n = 16) …

0301 basic medicineMaleCancer ResearchAdoptive cell transfermedicine.medical_treatmentT-LymphocytesCytomegalovirusT-Cell Antigen Receptor SpecificityHuman leukocyte antigenHematopoietic stem cell transplantationAntiviral AgentsImmunotherapy AdoptiveLymphocyte Depletion03 medical and health sciencesImmunocompromised HostDrug Resistance ViralmedicineHumansProspective StudiesViremiabusiness.industryGraft SurvivalHematopoietic Stem Cell Transplantationvirus diseasesHematologyImmunotherapyAllograftsVirologyTissue DonorsHistocompatibilityTransplantationHaematopoiesis030104 developmental biologyOncologyHematologic NeoplasmsHistocompatibilityMyelodysplastic SyndromesImmunologyCytomegalovirus InfectionsFemaleStem cellbusiness
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Positive Role of the MHC Class-I Antigen Presentation Regulator m04/gp34 of Murine Cytomegalovirus in Antiviral Protection by CD8 T Cells

2020

Murine cytomegalovirus (mCMV) codes for MHC class-I trafficking modulators m04/gp34, m06/gp48, and m152/gp40. By interacting with the MHC class-Iα chain, these proteins disconnect peptide-loaded MHC class-I (pMHC-I) complexes from the constitutive vesicular flow to the cell surface. Based on the assumption that all three inhibit antigen presentation, and thus the recognition of infected cells by CD8 T cells, they were referred to as “immunoevasins.” Improved antigen presentation mediated by m04 in the presence of m152 after infection with deletion mutant mCMV-Δm06W, compared to mCMV-Δm04m06 expressing only m152, led us to propose renaming these molecules “viral regulators of antigen present…

0301 basic medicineMicrobiology (medical)BAC mutagenesisMuromegalovirusAdoptive cell transfer030106 microbiologyImmunologyAntigen presentationMutantlcsh:QR1-502CD8 T cellsPeptide bindingCD8-Positive T-LymphocytesMajor histocompatibility complexAntiviral AgentsMicrobiologylcsh:MicrobiologyMiceViral Proteins03 medical and health sciencesCellular and Infection MicrobiologyMHC class IAnimalsCytotoxic T cellnext-generation sequencing (NGS)adoptive cell transferimmune evasionAntigen PresentationMembrane GlycoproteinsbiologyMHC class I antigenHistocompatibility Antigens Class IimmunoevasinBrief Research ReportCell biology030104 developmental biologyInfectious Diseasesbiology.proteinrecombinant virusFrontiers in Cellular and Infection Microbiology
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TEM8/ANTXR1-Specific CAR T Cells as a Targeted Therapy for Triple-Negative Breast Cancer.

2018

Abstract Triple-negative breast cancer (TNBC) is an aggressive disease lacking targeted therapy. In this study, we developed a CAR T cell–based immunotherapeutic strategy to target TEM8, a marker initially defined on endothelial cells in colon tumors that was discovered recently to be upregulated in TNBC. CAR T cells were developed that upon specific recognition of TEM8 secreted immunostimulatory cytokines and killed tumor endothelial cells as well as TEM8-positive TNBC cells. Notably, the TEM8 CAR T cells targeted breast cancer stem–like cells, offsetting the formation of mammospheres relative to nontransduced T cells. Adoptive transfer of TEM8 CAR T cells induced regression of established…

0301 basic medicineOncologyCancer ResearchAdoptive cell transfermedicine.medical_specialtyLung Neoplasmsmedicine.medical_treatmentT-LymphocytesCell- and Tissue-Based TherapyReceptors Antigen T-CellApoptosisReceptors Cell SurfaceTriple Negative Breast NeoplasmsTargeted therapy03 medical and health sciencesMice0302 clinical medicineBreast cancerAntigenInternal medicineBiomarkers TumorTumor Cells CulturedMedicineAnimalsHumansTriple-negative breast cancerCell Proliferationbusiness.industryMicrofilament ProteinsCancerImmunotherapyTriple Negative Breast Neoplasmsmedicine.diseasePrognosisXenograft Model Antitumor AssaysNeoplasm ProteinsSurvival Rate030104 developmental biologyOncology030220 oncology & carcinogenesisCase-Control StudiesFemaleImmunotherapybusinessFollow-Up StudiesCancer research
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2016

Successful reconstitution of cytomegalovirus (CMV)-specific CD8+ T cells by hematopoietic cell transplantation (HCT) gives a favorable prognosis for the control of CMV reactivation and prevention of CMV disease after hematoablative therapy of hematopoietic malignancies. In the transient immunocompromised state after HCT, pre-emptive cytoimmunotherapy with viral epitope-specific effector or memory CD8+ T cells is a promising option to speed up antiviral control. Despite high-coding capacity of CMVs and a broad CD8+ T-cell response on the population level, which reflects polymorphism in major histocompatibility complex class-I (MHC-I) glycoproteins, the response in terms of quantity of CD8+ T…

0301 basic medicineeducation.field_of_studyAdoptive cell transferbiologyImmunologyPopulationImmunodominanceMajor histocompatibility complexVirologyEpitopeTransplantation03 medical and health sciences030104 developmental biologyImmunologybiology.proteinImmunology and AllergyCytotoxic T celleducationCD8Frontiers in Immunology
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Current advances in γδ T cell-based tumor immunotherapy

2017

γδ T cells are a minor population (~5%) of CD3 T cells in the peripheral blood, but abound in other anatomic sites such as the intestine or the skin. There are two major subsets of γδ T cells: those that express Vd1 gene, paired with different Vγ elements, abound in the intestine and the skin, and recognize the major histocompatibility complex (MHC) class I-related molecules such as MHC class I-related molecule A, MHC class I-related molecule B, and UL16-binding protein expressed on many stressed and tumor cells. Conversely, γδ T cells expressing the Vδ2 gene paired with the Vγ9 chain are the predominant (50-90%) γδ T cell population in the peripheral blood and recognize phosphoant…

0301 basic medicinelcsh:Immunologic diseases. AllergyAdoptive cell transferadoptive transferT cellImmunologyReviewBiologyMajor histocompatibility complexγδ T cells03 medical and health sciencesInterleukin 210302 clinical medicineAdoptive transfer; Immunoevasion; Immunotherapy; Zoledronate; γδ T cells; Immunology and Allergy; ImmunologyMHC class ImedicineCytotoxic T cellImmunology and AllergyAdoptive transfer Immunoevasion Immunotherapy Zoledronate γδ T cellsGamma delta T cellγδ T cellMHC restriction030104 developmental biologymedicine.anatomical_structureImmunologybiology.proteinimmunoevasionimmunotherapylcsh:RC581-607030215 immunologyZoledronate
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Galectin-3 Released by Pancreatic Ductal Adenocarcinoma Suppresses γδ T Cell Proliferation but Not Their Cytotoxicity

2020

Pancreatic ductal adenocarcinoma (PDAC) is characterized by an immunosuppressive tumor microenvironment with a dense desmoplastic stroma. The expression of β-galactoside-binding protein galectin-3 is regarded as an intrinsic tumor escape mechanism for inhibition of tumor-infiltrating T cell function. In this study, we demonstrated that galectin-3 is expressed by PDAC and by γδ or αβ T cells but is only released in small amounts by either cell population. Interestingly, large amounts of galectin-3 were released during the co-culture of allogeneic in vitro expanded or allogeneic or autologous resting T cells with PDAC cells. By focusing on the co-culture of tumor cells and γδ T cells, we obse…

0301 basic medicinelcsh:Immunologic diseases. AllergyAdultAdoptive cell transferT cellproliferationGalectinsPopulationCellImmunologypancreatic cancerT cellsautologous03 medical and health sciences0302 clinical medicineLymphocytes Tumor-InfiltratingPancreatic cancerCell Line Tumorgalectin-3medicineotorhinolaryngologic diseasesImmunology and AllergyCytotoxic T cellHumansCytotoxicityeducationα3β1 integrinIntraepithelial LymphocytesOriginal ResearchCell Proliferationgammadelta T cellsTumor microenvironmenteducation.field_of_studyChemistryBlood Proteinsmedicine.diseasePancreatic Neoplasms030104 developmental biologymedicine.anatomical_structureCancer researchbispecific antibodieslcsh:RC581-607030215 immunologyCarcinoma Pancreatic DuctalFrontiers in Immunology
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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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Controversies on the role of Th17 in cancer: a TGF-β-dependent immunosuppressive activity?

2012

The immune system has important roles in limiting the spread of cancer and shaping the tumor microenvironment. Although the contributions of T helper 17 (Th17) cells (a subtype of CD4(+) T lymphocytes) to autoimmunity and allergy response are well known, their roles in cancer remain ambiguous. Despite adoptive transfer studies indicating that mouse Th17 cells support anticancer immunity, the Th17 cells that naturally infiltrate experimental tumors appear to have a tumor-promoting effect. These contradictory properties can be related to the high degree of plasticity inherent in Th17 cells and their capacity to differentiate into tumoricidal Th1-like cells. Mouse Th17 cells induced by transfo…

Adoptive cell transferAngiogenesisAntigen-Presenting Cellschemical and pharmacologic phenomenaBiologymedicine.disease_causeAutoimmunityMice03 medical and health sciences0302 clinical medicineImmune systemAntigenAntigens CDTransforming Growth Factor betaImmunityNeoplasmsImmune TolerancemedicineAnimals5'-NucleotidaseMolecular Biology030304 developmental biologyImmunity Cellular0303 health sciencesTumor microenvironmentNeovascularization PathologicApyraseModels ImmunologicalCell DifferentiationTh1 Cells3. Good health030220 oncology & carcinogenesisImmunologyCancer researchTh17 CellsMolecular MedicineTransforming growth factorTrends in Molecular Medicine
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