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Novel Nanotechnologies and Molecular Imaging Approaches for Cancer Immunotherapy

Novel Nanotechnologies and Molecular Imaging Approaches for Cancer Immunotherapy
用于癌症免疫治疗的新型纳米技术和分子成像方法
批准号:
8380717
负责人:
Caius Gabriel Radu
金额:
$36.77万
依托单位国家:
美国
项目类别:
财政年份:
--
资助国家:
美国
项目状态:
未结题
起止时间:
关键词:
Adoptive Cell TransfersAntibodiesAntigen TargetingAntigenic SpecificityAntigensBackBindingBiological MarkersBiologyBiopsyBiopsy SpecimenBlood specimenBuild-itCCNE1 geneCD8-Positive T-LymphocytesCD8B1 geneCancer CenterCancer DiagnosticsCancer Immunology ScienceCancer PatientCancer VaccinesCell DeathCell SeparationCell TherapyCellsCellular ImmunityChromatographyClinicalClinical TrialsCollaborationsConsensusCoupledDNADNA Microarray ChipDNA SequenceDataDisease remissionDoseEngineeringFeasibility StudiesFingersFrequenciesFundingGenomeGoalsHomingHumanImageImaging DeviceImmuneImmunologic MemoryImmunosuppressive AgentsImmunotherapyIndividualLibrariesMajor Histocompatibility ComplexMalignant NeoplasmsMalignant neoplasm of ovaryMeasurementMelanoma CellMetastatic MelanomaMicrofluidicsMiningMolecular BiologyMonitorMonoclonal AntibodiesMusNanotechnologyNucleic AcidsPathway interactionsPatientsPeptide/MHC ComplexPeptidesPhasePositron-Emission TomographyProliferatingProteomeReadingReceptor GeneSamplingScreening procedureSolutionsSorting - Cell MovementSpecificityT-Cell ReceptorT-Cell Receptor GenesT-LymphocyteTechniquesTechnologyTherapeuticTherapy Clinical TrialsTransgenic OrganismsTranslationsTreatment EffectivenessTreatment EfficacyTumor AntigensValidationWorkbasecancer immunotherapycancer therapyclinical effectcost effectivecytokinecytotoxicfunctional statusgene therapykillingsmeetingsmelanomamolecular imagingnanosystemsneoplastic cellnovelnovel strategiesnovel therapeuticsperipheral bloodresistance mechanismresponsetooltraffickingtumortumor growth

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英文摘要
Most cancer therapeutics require continuous dosing to overcome the logarithmic re-growth of tumors. In contrast, T cells targeted to cancer via tumor associated antigens (TAA), can expand for an initial clinical effect and, then to be self-sustained and effective over long intervals due to the acquisition of immunological memory. Ample experimental data in mice support these concepts and there is substantial clinical evidence that certain cancers, in particular melanoma, undergo sustained remissions when T cell mediated immunity against TAAs is activated by cancer vaccines, cell-based therapies or monoclonal antibodies (1,4,5). However, the low frequency of such responses and the limited spectrum of tumor types that show objective responses to immunotherapy have been disappointing. Tumors evolve mechanisms that resist immunotherapy by blocking cell death pathways, by suppressina the expression of target antigens or by generating immunosuppressive microenvironments. Recent data(6,7) suggest that, in some patients, these resistance mechanisms can be circumvented by combining ACT with TCR gene therapy. This novel approach dramatically increases the number of CTLs that express effective anti-tumor TCRs. We and others hypothesize that this approach will dramatically enhance the efficacy of the ACT therapy for melanoma patients, and for other major cancers.
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Molecular Imaging of DNA Salvage Metabolism in Cancer
Novel Nanotechnologies and Molecular Imaging Approaches for Cancer Immunotherapy
Novel Nanotechnologies and Molecular Imaging Approaches for Cancer Immunotherapy
Molecular Imaging of DNA Salvage Metabolism in Cancer
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