Circumventing Barriers to Effective Oncolytic Virotherapy of Malignant Gliomas
Circumventing Barriers to Effective Oncolytic Virotherapy of Malignant Gliomas
批准号:
8841487
负责人:
MICHAEL A CALIGIURI
金额:
$8.95万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2013
资助国家:
美国
项目状态:
已结题
起止时间:
2013-02-07 至 2018-01-31
关键词:
AddressAdultAffectAnimal ModelAntiviral AgentsBiometryCell NucleusCell Surface ReceptorsCellsChemicalsChildChinaChondroitinasesClinical TrialsDNADataDiagnosisEmotionalEngineeringFundingGenesGeneticGlioblastomaGliomaGoalsHDAC6 geneHerpesvirus 1HistonesHumanHuman VirusHyaluronidaseImmune responseImmunologicsInterferonsLaboratoriesLogicLysosomesMalignant - descriptorMalignant GliomaMalignant NeoplasmsMethodsMicroRNAsModalityMolecularNK Cell ActivationNatureNervous System NeoplasmsNervous system structureNeurotropismNormal tissue morphologyOncolyticOncolytic virusesOperative Surgical ProceduresPalliative CarePathologyPatientsPharmaceutical PreparationsPhasePhase I Clinical TrialsProductionPublicationsPublishingRNARelative (related person)ResearchResearch PersonnelResourcesSafetyScientistSolutionsTestingTherapeuticTranslatingTreatment EfficacyUnited States National Institutes of HealthViralVirotherapyVirusVirus DiseasesWorkbasebiobankloved onesmouse modelmutantneoplastic cellnovelpalliativeprogramsresponsetherapeutic effectivenesstumortumor microenvironment
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): The treatment for malignant glioma (glioblastoma) remains a challenge. Several experimental paradigms continue to be utilized in clinical trials, such as oncolytic viruses (OV), engineered or naturally occurring virus strains that replicate selectively in tumors. Oncolytic herpes simplex virus type 1 (oHSV) clinical trials have revealed its safety in humans with malignant gliomas, but more work is required to increase its efficacy. The investigators of this program project thus hypothesize that oHSV replication and dispersal in glioblastoma is curtailed by multiple oHSV-based and host-based barriers and responses during the very initial phases of viral infection and replication {aim 1). Understanding the nature
of these barriers and responses would allow us to exploit both pharmacologic and genetic modalities to circumvent oHSV-based and host-based barriers and responses and increase the efficacy of malignant glioma virotherapy (aim 2). To achieve these aims, project 1 (PI: J. Glorioso) plans to re-engineer oHSV to redirect it towards glioma cell surface receptors while increasing its safety using microRNA-based translational controls of oHSV genes; Project 2 (PI: E.A. Chiocca) will characterize a novel mechanism of antiviral action within tumor cells that is based on one of the histone deacetylases, HDAC6, how it interacts with Interferon and how it shuttles post-entry oHSV towards lysosomes for xenophagy rather than nucleus for active replication; Project 3 (PI: B. Kaur) will determine how the stroma of the tumor microenvironment impedes oHSV dispersal and will utilize chondroitinase to counteract this; Project 4 (PI: M.A. Caligiuri) will show how the rapid NK cell activation against virally infected nervous system tumors is deleterious to therapy and will characterize the cellular and molecular effectors of this
response. These 5 projects will be served by the unique resources provided by Core A (Biostatistics/ Administration: Chiocca/Fernadez) that provides biostatistical justification for al projects, Core B (oHSV Production: Goins) that provides all projects with the same stock of purified oHSV and Core C (Glioma Biorepository: Nakano) that provides all projects with patient-derived glioma spheroids (GSs) that recapitulate the human tumor phenotypic/genetic features.
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