Novel Therapeutic Approaches for the Treatment of Neuroblastoma
Novel Therapeutic Approaches for the Treatment of Neuroblastoma
批准号:
10524169
负责人:
Michael A Dyer
金额:
$12.91万
依托单位国家:
美国
项目类别:
财政年份:
2020
资助国家:
美国
项目状态:
未结题
起止时间:
2020-04-01 至 2025-03-31
关键词:
ATRX geneAffectAgeAntibodiesBindingBiogenesisBiologyChildChildhood Solid NeoplasmClinical TrialsComplexCyclophosphamideDNADNA DamageDNA Polymerase IDNA RepairDNA biosynthesisDataDatabasesDefectDiagnosisDoseDrug KineticsEvaluationG-QuartetsGenerationsGenomicsGoalsGovernmentGrowthHealthHistonesHumanHuman Cell LineImmunotherapyInterleukin-15Interleukin-2MYCN geneMalignant NeoplasmsMediatingMetabolicMolecularMolecular ChaperonesMolecular Diagnostic TestingMutationNatural Killer CellsNeuroblastomaOncogene ActivationOncogenesOutcomePathway interactionsPatient-Focused OutcomesPatientsPediatric NeoplasmPersonsPhase I/II Clinical TrialPlayPositioning AttributePreclinical TestingProcessPrognosisPublishingRNAReactive Oxygen SpeciesRecurrenceReportingResearchResearch Project GrantsResearch ProposalsRibosomesRoleSaint Jude Children&aposs Research HospitalScheduleSeriesSolid NeoplasmStandardizationStructureTestingTherapeuticTopotecanToxic effectTranslatingTranslational ResearchTumor Suppressor Genesantibody-dependent cell cytotoxicitychemotherapyclinically relevantcytokinedesigndisorder riskdrug sensitivityefficacy testingepigenomicsexperiencehigh riskimprovedimproved outcomein vivoinduced pluripotent stem cellinhibitormitochondrial dysfunctionmolecular targeted therapiesmouse modelmultidisciplinarymutantneoplastic cellneuroblastoma cellnovel therapeutic interventionpreventreplication stressresponsetumortumor growthtumor microenvironment
中文摘要
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英文摘要
Aggressive cancers often have activating mutations in growth-controlling oncogenes and inactivating
mutations in tumor-suppressor genes. In neuroblastoma, amplification of the MYCN oncogene and
inactivation of the ATRX tumor-suppressor gene correlate with high-risk disease and poor prognosis.
Here we show that ATRX mutations and MYCN amplification are mutually exclusive across all ages
and stages in neuroblastoma. Using human cell lines and mouse models, we found that elevated
MYCN expression and ATRX mutations are incompatible. Elevated MYCN levels promote metabolic
reprogramming, mitochondrial dysfunction, reactive-oxygen species generation, and DNA-replicative
stress. The combination of replicative stress caused by defects in the ATRX–histone chaperone
complex and that induced by MYCN-mediated metabolic reprogramming leads to synthetic lethality.
Therefore, ATRX and MYCN represent an unusual example, where inactivation of a tumor-suppressor
gene and activation of an oncogene are incompatible. In this proposal, we will exploit this synthetic
lethality to improve outcomes for patients with high-risk and/or recurrent neuroblastoma. Specifically,
we will use molecular targeted therapeutics to perturb ATRX-dependent processes in MYCN amplified
neuroblastomas and to disrupt MYCN-dependent processes in ATRX deficient tumors. In this
translational research proposal, we will target both the tumor cells and the tumor microenvironment.
All published and unpublished data are freely shared through the Childhood Solid Tumor Network to
accelerate discovery on neuroblastoma. The results of these studies will be used to design the next
neuroblastoma clinical trials at St. Jude.
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会议论文
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依托单位:
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依托单位:
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依托单位:
海外基金