Gene-Environment Factors in Childhood Brain Tumors
Gene-Environment Factors in Childhood Brain Tumors
批准号:
7417443
负责人:
BETH A MUELLER
金额:
$18.57万
依托单位国家:
美国
项目类别:
财政年份:
2006
资助国家:
美国
项目状态:
已结题
起止时间:
2006-05-01 至 2010-04-30
关键词:
AffectAgeAromatic Polycyclic HydrocarbonsBCHE geneBiologicalBrainBrain NeoplasmsCYP1A1 geneCYP1A2 geneCYP1B1 geneCYP2C19 geneCYP2D6 geneCYP2E1 geneCYP3A4 geneCase-Control StudiesCategoriesCharacteristicsChemicalsChildChildhoodChildhood Brain NeoplasmCollaborationsDNADataDiagnosisDiseaseEPHX1 geneEatingEnvironmentEnvironmental ExposureEpoxy CompoundsFMO1FMO3FamilyFutureGSTM1 geneGSTP1 geneGSTT1 geneGSTT1 proteinGenesGeneticGenetic PolymorphismGenetic Predisposition to DiseaseGrantHistologicHome environmentHydrolysisIndividualInsecticidesInterviewMeasuresMeatMetabolismMethodsMicrosomal Epoxide HydrolaseMothersNAD(P)H dehydrogenase (quinone) 1, humanNQO1 geneNational Cancer InstitutePathway interactionsPesticidesPilot ProjectsPlayPopulationPredispositionPregnancyProcessQuestionnairesResearch PriorityRiskRoleSample SizeSmokeSolid NeoplasmSolventsSpecimenTobacco smokeXenobiotic Metabolismbasecigarette smokingcooperative studyearly childhoodexhaustfetalglutathione S-transferase M1glutathione S-transferase pineurotoxicpesticide exposureprenatalprenatal exposureprenatal smokingpreventtraittumor
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): The environmental and genetic causes of childhood brain tumors (CBT) are largely unknown, and because brain tumors are relatively rare, collaborations that include data from multiple regions are necessary. This grant resubmission is responsive to several National Cancer Institute research priorities for brain tumor studies, in that it seeks to establish such a collaboration, sets a framework for future cooperative studies, and evaluates leads on brain tumors, in this case, genetic polymorphisms that are known to affect the metabolism of pesticides and polycyclic aromatic hydrocarbons [PAH], chemicals common in children's environments and potentially related to CBT. Our pilot study (R03 CA106011, a population-based case-control study of functional xenobiotic
metabolism polymorphisms) identified specific traits that may increase children's susceptibility to these chemicals. Polymorphisms in pesticide-metabolism genes (GSTT1, PON1) were associated with 2- to 3-fold increased risks of CBT among children with pesticide exposure. A polymorphism in EPHX1, important in metabolizing PAH, was associated with a 5-fold increased risk among children exposed prenatally to tobacco smoke. These results were based on DMA and interview data from only 66 cases and 137 controls, and they need to be clarified with a larger study. We propose to expand our study to include 300 additional subjects with similar specimens and exposure data. Continuing to focus on functional polymorphisms (mainly in genes expressed in fetal/childhood brain), we propose to confirm the findings of our pilot study related to pesticide (PON1, GSTT1, CYP2E1), and PAH (EPHX1, GSTP1, GSTM1) metabolism, and consider additional genes whose products metabolize pesticides (BCHE, CYP2C19, CYP3A4, CYP2D6, CYP1A2, FMO1, FMO3, ALDH3A1, PON2) or PAH (MPO, SULT1A1, CYP1A1, CYP1B1, NQO1, GSTM3).Lay Description: The causes of brain tumors in children are largely unknown, but both genes and environmental exposures are probably important. Understanding these may help us to prevent and treat this devastating disease. The proposed multi-state collaboration will explore the influence of genes that affect how individuals process common environmental exposures in the body, specifically pesticides and PAH, chemicals in tobacco smoke, charred meat and vehicle exhaust.
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