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Melanoma RAS/BRAF Mutation--Heterogeneity-Risk-Prognosis

Melanoma RAS/BRAF Mutation--Heterogeneity-Risk-Prognosis
黑色素瘤 RAS/BRAF 突变--异质性-风险-预后
批准号:
7229454
负责人:
NANCY E THOMAS
金额:
$49.89万
依托单位国家:
美国
项目类别:
财政年份:
2005
资助国家:
美国
项目状态:
已结题
起止时间:
2005-05-13 至 2010-03-31
关键词:
AgeAustraliaBRAF geneBiometryBreslow ThicknessCDKN2A geneCaliforniaClassificationClinicalClinical TreatmentClinical TrialsCollaborationsComprehensive Cancer CenterCore FacilityCountCutaneous MelanomaDNADNA Repair GeneDataDepthDermatologyDevelopmentDiagnosisDiseaseDoctor of PhilosophyEarly DiagnosisEnvironmentEnvironmental Risk FactorEpidemiologyEthnic OriginEtiologyEuropeanExcisionExhibitsExposure toFamily Cancer HistoryFrecklesFrequenciesGene MutationGenesGeneticGenetic Predisposition to DiseaseGenotypeGoalsHeterogeneityHistologicHistopathologyHumanIncidenceIndividualInternationalInvasiveInvestigationKnowledgeLasersLiteratureMEKsManualsMarketingMeasuresMediator of activation proteinMedicalMedical SurveillanceMelanocortin 1 ReceptorMelanocytic nevusMethodsMichiganMicroscopyMitoticMole the mammalMolecularMolecular BiologyMolecular EpidemiologyMutateMutationN-ras GenesNRAS geneNeoplasm MetastasisNevusNew JerseyNew South WalesNorth CarolinaNucleotide Excision RepairOncogenesParentsPathogenesisPathway interactionsPatientsPatternPharmacologic SubstancePhasePhenotypePolymerase Chain ReactionPolymorphism AnalysisPopulationPositioning AttributePredispositionPreventionProtocols documentationRateResearchResearch DesignResearch PersonnelResistanceRiskRisk BehaviorsRisk FactorsRoleSamplingSignal PathwaySignal TransductionSingle-Stranded Conformational PolymorphismSiteSkinSolar elastosisSomatic MutationStagingSubgroupSun ExposureSurveysTestingTimeTranslatingTumor PathologyUlcerUltraviolet B RadiationUltraviolet RaysVariantWorkbasecase-basedcohortexpectationimprovedinhibitor/antagonistinnovationinsightknowledge baselaser capture microdissectionmelanomamortalitynoveloutcome forecastp21 N-Ras Proteinpre-clinicalpreventprognosticprogramstooltumorultraviolet

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DESCRIPTION (provided by applicant): Melanoma can metastasize at an early stage, and these metastases are typically resistant to medical treatment. In addition, melanoma is rising in incidence and mortality, greatly increasing the need for methods of prevention, early diagnosis, and treatment. Primary human cutaneous melanoma often has activating mutations in either NRAS or BRAF early in its progression; these activating mutations likely have a causal rather than simply correlative role in melanoma development; and evidence exists to support ultraviolet, in combination with genotypic and associated phenotypic susceptibilities, in the pathogenesis of somatic mutations in melanoma. We propose to determine the population-based frequencies of NRAS and BRAF somatic mutations in melanomas in a large international cohort and their associations with histologic subtypes, known risk factors, and prognostic indicators in melanoma. In addition, we will determine whether tumors from patients with second primary melanoma exhibit similar molecular classifications to the first primary. NRAS and BRAF mutational status will be characterized using a highly sensitive combination of laser capture microscopy and single strand conformational polymorphism analysis with direct manual sequencing of PCR products. Understanding of the role of these somatic mutations in the etiology and progression of melanoma likely will be crucial for its prevention, improved diagnosis, and effective application of new clinical treatments.
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Project 2: Primary melanoma DNA Methylation profiling for evaluating subtypes and survival
Project 2: Primary melanoma DNA Methylation profiling for evaluating subtypes and survival
Melanoma RAS/BRAF Mutation: Heterogeneity-Risk-Prognosis
Melanoma RAS/BRAF Mutation:Heterogeneity-Risk-Prognosis
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