Search results for " Adoptive"

showing 10 items of 43 documents

Prophylactic transfer of CD8-depleted donor lymphocytes after T-cell–depleted reduced-intensity transplantation

2006

AbstractAllogeneic hematopoietic stem cell transplantation (SCT) regimens incorporating the lymphocytotoxic CD52 antibody alemtuzumab demonstrate efficient engraftment and reduced graft-versus-host disease (GVHD). However, these protocols substantially impair posttransplantation antiviral and antitumor immunity. To accelerate immune reconstitution after alemtuzumab-based reduced-intensity SCT, we administered prophylactic CD8-depleted donor lymphocyte infusions (DLIs) starting on days 60 and 120 after transplantation. DLIs were processed in an immunomagnetic good manufacturing practice depletion procedure resulting in a 2.5- to 6-log reduction in CD8 T cells. Of 23 high-risk patients with h…

AdultMaleTransplantation ConditioningCD52Antibodies Neoplasmmedicine.medical_treatmentT cellImmunologyGraft vs Host DiseaseHematopoietic stem cell transplantationCD8-Positive T-LymphocytesAntibodies Monoclonal HumanizedImmunotherapy AdoptiveBiochemistryLymphocyte DepletionHLA AntigensmedicineHumansCytotoxic T cellAlemtuzumabPeripheral Blood Stem Cell TransplantationImmunomagnetic Separationbusiness.industryGraft SurvivalAntibodies MonoclonalCell BiologyHematologyMiddle AgedDonor Lymphocytesmedicine.diseaseTransplantationTreatment Outcomesurgical procedures operativeGraft-versus-host diseasemedicine.anatomical_structureHematologic NeoplasmsLangerhans CellsImmunologyAlemtuzumabFemaleK562 CellsbusinessFollow-Up Studiesmedicine.drugBlood
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Exclusive transduction of human CD4+ T Cells upon systemic delivery of CD4-targeted lentiviral vectors

2015

Abstract Playing a central role in both innate and adaptive immunity, CD4+ T cells are a key target for genetic modifications in basic research and immunotherapy. In this article, we describe novel lentiviral vectors (CD4-LV) that have been rendered selective for human or simian CD4+ cells by surface engineering. When applied to PBMCs, CD4-LV transduced CD4+ but not CD4− cells. Notably, also unstimulated T cells were stably genetically modified. Upon systemic or intrasplenic administration into mice reconstituted with human PBMCs or hematopoietic stem cells, reporter gene expression was predominantly detected in lymphoid organs. Evaluation of GFP expression in organ-derived cells and blood …

CD4-Positive T-Lymphocytes10028 Institute of Medical VirologyCell TransplantationGenetic enhancementAdoptiveMice SCIDImmunotherapy AdoptiveInterleukin 21MiceMice Inbred NODTransduction GeneticBone MarrowLeukocytesImmunology and AllergyCytotoxic T cellIL-2 receptorLuciferasesCells CulturedMice KnockoutHeterologousTumorCulturedForkhead Transcription FactorsAcquired immune systemFlow Cytometry3. Good healthCell biologymedicine.anatomical_structure[SDV.MP.VIR]Life Sciences [q-bio]/Microbiology and Parasitology/Virology2723 Immunology and Allergy[SDV.IMM]Life Sciences [q-bio]/ImmunologyImmunotherapyRegulatory T cellCellsKnockoutTransplantation HeterologousImmunologyMononuclearGenetic VectorsGreen Fluorescent Proteins610 Medicine & healthStreptamerThymus GlandBiologySCIDCell LineTransductionGeneticCell Line TumormedicineAnimalsHumansInterleukin 3Transplantation2403 ImmunologyLentivirusGenetic TherapyMolecular biology[SDV.MP.BAC]Life Sciences [q-bio]/Microbiology and Parasitology/BacteriologyHEK293 CellsLeukocytes MononuclearInbred NOD570 Life sciences; biologySpleen
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T-cell receptor transfer into human T cells with ecotropic retroviral vectors

2014

Adoptive T-cell transfer for cancer immunotherapy requires genetic modification of T cells with recombinant T-cell receptors (TCRs). Amphotropic retroviral vectors (RVs) used for TCR transduction for this purpose are considered safe in principle. Despite this, TCR-coding and packaging vectors could theoretically recombine to produce replication competent vectors (RCVs), and transduced T-cell preparations must be proven free of RCV. To eliminate the need for RCV testing, we transduced human T cells with ecotropic RVs so potential RCV would be non-infectious for human cells. We show that transfection of synthetic messenger RNA encoding murine cationic amino-acid transporter 1 (mCAT-1), the re…

CD4-Positive T-LymphocytesAdoptive cell transfermedicine.medical_treatmentGenetic enhancementGenetic VectorsReceptors Antigen T-CellCD8-Positive T-LymphocytesBiologyImmunotherapy AdoptiveJurkat cellsVesicular stomatitis Indiana virusCell LineJurkat CellsMiceTransduction (genetics)Viral Envelope ProteinsCancer immunotherapyTransduction GeneticGeneticsmedicineAnimalsHumansRNA MessengerMolecular BiologyCationic Amino Acid Transporter 1Membrane GlycoproteinsHEK 293 cellsT-cell receptorTransfectionAdoptive TransferVirologyElectroporationHEK293 CellsRetroviridaeLeukemia Virus Gibbon ApeMolecular MedicinePlasmidsGene Therapy
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Targeting the activation-induced antigen CD137 can selectively deplete alloreactive T cells from antileukemic and antitumor donor T-cell lines.

2006

AbstractIn HLA-incompatible hematopoietic stem cell transplantation, alloreactive donor T cells recognizing recipient mismatch HLA cause severe graft-versus-host disease (GVHD). Strategies allowing the selective depletion of alloreactive T cells as well as the enhancement of graft-versus-malignancy immunity would be beneficial. We generated donor CD8 T-cell lines in vitro using allogeneic recipient cells mismatched at a single HLA class I allele or haplotype as stimulators. Recipient cells were obtained from acute myeloid leukemias, renal-cell carcinomas, and CD40L-induced B lymphoblasts. Resulting alloreactive T cells were activated by incubating day 21 T-cell cultures with HLA-mismatch tr…

CD4-Positive T-LymphocytesHerpesvirus 4 HumanIsoantigensT cellImmunologyCD40 LigandCytomegalovirusGraft vs Host DiseaseHuman leukocyte antigenBiologyCD8-Positive T-LymphocytesIn Vitro TechniquesLymphocyte ActivationTransfectionBiochemistryImmunotherapy AdoptiveLymphocyte DepletionTumor Necrosis Factor Receptor Superfamily Member 9AntigenHLA AntigensT-Lymphocyte SubsetsmedicineCytotoxic T cellHumansCarcinoma Renal CellCells CulturedSkinB-LymphocytesImmunomagnetic SeparationLymphoblastCD137Cell BiologyHematologyT lymphocyteFibroblastsCytotoxicity Tests ImmunologicKidney Neoplasmsmedicine.anatomical_structureLeukemia MyeloidHistocompatibilityImmunologyK562 CellsCD8Blood
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Generation of CD8+T cells expressing two additional T-cell receptors (TETARs) for personalised melanoma therapy

2015

Adoptive T-cell therapy of cancer often fails due to the tumor cells' immune escape mechanisms, like antigen loss or down-regulation. To anticipate immune escape by loss of a single antigen, it would be advantageous to equip T cells with multiple specificities. To study the possible interference of 2 T-cell receptors (TCRs) in one cell, and to examine how to counteract competing effects, we generated TETARs, CD8(+) T cells expressing two additional T-cell receptors by simultaneous transient transfection with 2 TCRs using RNA electroporation. The TETARs were equipped with one TCR specific for the common melanoma antigen gp100 and one TCR recognizing a patient-specific, individual mutation of…

Cancer ResearchSkin Neoplasmsmedicine.medical_treatmentReceptors Antigen T-CellCD8-Positive T-LymphocytesBiologyImmunotherapy AdoptiveAntigenCell Line TumormedicineHumansCytotoxic T cellPrecision MedicineAntigen-presenting cellReceptorMelanomaPharmacologyT-cell receptorImmunotherapyResearch PapersMolecular biologyOncologyCancer researchMolecular MedicineCytokine secretionChaperonin Containing TCP-1CD8gp100 Melanoma AntigenCancer Biology & Therapy
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T-cell Receptor Therapy Targeting Mutant Capicua Transcriptional Repressor in Experimental Gliomas

2021

Abstract Purpose: Gliomas are intrinsic brain tumors with a high degree of constitutive and acquired resistance to standard therapeutic modalities such as radiotherapy and alkylating chemotherapy. Glioma subtypes are recognized by characteristic mutations. Some of these characteristic mutations have shown to generate immunogenic neoepitopes suitable for targeted immunotherapy. Experimental Design: Using peptide-based ELISpot assays, we screened for potential recurrent glioma neoepitopes in MHC-humanized mice. Following vaccination, droplet-based single-cell T-cell receptor (TCR) sequencing from established T-cell lines was applied for neoepitope-specific TCR discovery. Efficacy of intravent…

Cancer ResearchT-LymphocytesT cellCellchemical and pharmacologic phenomenaRecurrent GliomaMajor histocompatibility complexImmunotherapy AdoptiveMiceGliomamedicineAnimalsMHC class IIReceptors Chimeric AntigenbiologyELISPOTT-cell receptorGliomamedicine.diseaseDisease Models Animalmedicine.anatomical_structureOncologybiology.proteinCancer researchImmunotherapyNeoplasm Recurrence LocalClinical Cancer Research
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Comparative antitumor effect among GM-CSF, IL-12 and GM-CSF+IL-12 genetically modified tumor cell vaccines.

2013

Genetically modified cells have been shown to be one of the most effective cancer vaccine strategies. An evaluation is made of the efficacy of both preventive and therapeutic antitumor vaccines against murine melanoma, using C57BL/6 mice and irradiated B16 tumor cells expressing granulocyte and macrophage colony-stimulating factor (GM-CSF), interleukin-12 (IL-12) or both. Tumor was transplanted by the injection of wild-type B16 cells. Tumor growth and survival were measured to evaluate the efficacy of vaccination. Specific humoral response and immunoglobulin G (IgG) switch were evaluated measuring total IgG and IgG1 and IgG2a subtypes against tumor membrane proteins of B16 cells. In prevent…

Cancer Researchmedicine.medical_treatmentMelanoma ExperimentalBiologyTransfectionCancer VaccinesImmunotherapy AdoptiveImmunoglobulin GMicemedicineMacrophageAnimalsMolecular BiologyMicroscopy ConfocalMelanomaGranulocyte-Macrophage Colony-Stimulating FactorImmunotherapymedicine.diseaseInterleukin-12Survival AnalysisGenetically modified organismVaccinationMice Inbred C57BLImmunologyInterleukin 12biology.proteinMolecular MedicineCancer vaccineCancer gene therapy
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Teaming up for CAR-T cell therapy

2019

Adoptive cellular therapy using chimeric antigen receptor T-cell (CART) therapy is currently being evaluated in patients with relapsed / refractory multiple myeloma (MM). The majority of CAR-T cell programs now being tested in clinical trials are targeting B-cell maturation antigen. Several recent phase I / II trials show promising preliminary results in patients with MM progressing on proteasome inhibitors, immunomodulatory drugs and monoclonal antibodies targeting CD38. CAR-T cell therapy is a potentially life-threatening strategy that can only be administered in experienced centers. For the moment, CAR-T cell therapy for MM is still experimental, but once this strategy has been approved …

Consensusbusiness.industrymedicine.medical_treatmentHematologyImmunotherapymedicine.diseaseImmunotherapy AdoptiveEuropeEditorialPractice Guidelines as TopicCancer researchmedicineCAR T-cell therapyHumansReceptorbusinessMultiple MyelomaMultiple myelomaSocieties Medical
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Clinical trials with combination of cytokine-induced killer cells and dendritic cells for cancer therapy

2019

Adoptive cellular immunotherapy (ACI) is a promising treatment for a number of cancers. Cytokine-induced killer cells (CIKs) are considered to be major cytotoxic immunologic effector cells. Usually cancer cells are able to suppress antitumor responses by secreting immunosuppressive factors. CIKs have significant antitumor activity and are capable of eradicating tumors with few side effects. They are a very encouraging cell population used against hematological and solid tumors, with an inexpensive expansion protocol which could yield to superior clinical outcome in clinical trials employing adoptive cellular therapy combination. In the last decade, clinical protocols have been modified by e…

Cytotoxicity ImmunologicAllogeneic transplantationAdoptive cellular immunotherapyCD3CellPopulationReviewImmunotherapy AdoptiveDendritic cellsCatalysisInorganic Chemistrylcsh:ChemistryDendritic cells.medicineCytotoxic T cellHumansPhysical and Theoretical ChemistryeducationMolecular Biologylcsh:QH301-705.5Spectroscopyeducation.field_of_studyCytokine-induced killer cellsbiologyCytokine-induced killer cellbusiness.industryOrganic ChemistryGeneral MedicineComputer Science ApplicationsClinical trialKiller Cells Naturalmedicine.anatomical_structureCytokine-induced killer celllcsh:Biology (General)lcsh:QD1-999Cancer cellbiology.proteinCancer researchbusiness
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T cells engineered to express a T-cell receptor specific for glypican-3 to recognize and kill hepatoma cells in vitro and in mice

2015

Background & Aims Cancer therapies are being developed based on our ability to direct T cells against tumor antigens. Glypican-3 (GPC3) is expressed by 75% of all hepatocellular carcinomas (HCC), but not in healthy liver tissue or other organs. We aimed to generate T cells with GPC3-specific receptors that recognize HCC and used them to eliminate GPC3-expressing xenograft tumors grown from human HCC cells in mice. Methods We used mass spectrometry to obtain a comprehensive peptidome from GPC3-expressing hepatoma cells after immune-affinity purification of human leukocyte antigen (HLA)-A2 and bioinformatics to identify immunodominant peptides. To circumvent GPC3 tolerance resulting from feta…

Cytotoxicity ImmunologicCancer Immunotherapy ; Immune Response ; Liver Cancer ; Tumor-associated AntigensCarcinoma HepatocellularTime FactorsCell SurvivalMice SCIDCD8-Positive T-LymphocytesBiologyLymphocyte ActivationTransfectionImmunotherapy AdoptiveInterferon-gammaInterleukin 21GlypicansHLA-A2 AntigenAnimalsHumansCytotoxic T cellIL-2 receptorAntigen-presenting cellInterleukin 3HepatologyImmunodominant EpitopesZAP70Liver NeoplasmsGastroenterologyDendritic CellsHep G2 CellsNatural killer T cellXenograft Model Antitumor AssaysMolecular biologyCoculture TechniquesGenes T-Cell ReceptorInterleukin 12FemaleGenetic Engineering
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