Intrauterine Metal Exposure, Placental Gene Networks and Fetal Growth
Intrauterine Metal Exposure, Placental Gene Networks and Fetal Growth
批准号:
9756412
负责人:
Maya Ariane Deyssenroth
金额:
$10.3万
依托单位国家:
美国
项目类别:
财政年份:
2018
资助国家:
美国
项目状态:
已结题
起止时间:
2018-08-15 至 2019-12-31
关键词:
AddressAdvisory CommitteesBiologicalBiological MarkersBiological ProcessBiometryBirthBirth WeightBody BurdenCandidate Disease GeneCell Culture SystemCellsChildChild HealthCohort StudiesComplexComplex MixturesComputer SimulationCuesDataData SetDevelopmentDiseaseEnvironmentEnvironmental EpidemiologyEnvironmental ExposureEnvironmental HealthEpidemiologyExposure toFeedbackFellowshipFetal DevelopmentFetal GrowthFundingGenesGeneticGenomeGenomicsGrowthGrowth and Development functionHealthHumanIn VitroIndividualKnowledgeLaboratoriesLinkLiteratureLongevityMapsMeasurementMeasuresMediator of activation proteinMentorsMetal exposureMetalsMethodsModelingMolecularMolecular BiologyMolecular EpidemiologyNewborn InfantOrganOutcomePathway interactionsPhasePhenotypePlacentaPopulationPopulation StudyPositioning AttributePregnancyProcessQuantitative Trait LociRegression AnalysisResearchResearch PersonnelResearch TrainingResourcesRhode IslandRoleScheduleStatistical MethodsStructure of nail of toeSumSystemSystems BiologyTechnologyTimeToxic Environmental SubstancesToxic effectTrace metalTrainingbasebiological systemscohortcost effectivedesignexposed human populationextracellular vesiclesgenomic datahigh dimensionalityin uteroin vitro Modelindexinginsightmeetingsmigrationnovelpollutantpostnatalskillstooltoxic metaltranscriptometranscriptome sequencingtranscriptomics
中文摘要
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英文摘要
PROJECT SUMMARY
Perturbations during the intrauterine period, including exposures to toxic levels of trace metals, may disrupt
appropriate fetal growth and development and adversely impact health throughout the lifespan of the
individual. The placenta is the principal organ interpreting cues from the intrauterine environment to inform
fetal development, yet, changes in placental transcriptomic activity has not been systematically evaluated as a
possible mediator of fetal growth abnormalities. Comprehensively assessing the interrelationship between
metal mixture exposure, placental gene activity and fetal growth is becoming feasible with the increasing
availability of high-dimensional exposure and genomic data, however, the potential to fully harness the biologic
information retained in these large scale data-sets has yet to be realized.
To address these existing gaps, we outlined research and training aims to conduct environmental mixture
modeling in a population-based study in the context of high-throughput genomics data with verification in a
biological system. The proposed study represents the first comprehensive integration of multi-metal exposure
and placental genomics data in an epidemiologic setting. We will conduct this study using available resources
in RICHS, an ongoing, previously funded cohort, enabling us to identify novel environmentally sensitive
biomarkers in a cost-effective manner. The knowledge gained and tools developed through the proposed study
may be applied in other settings and have the potential to inform more broadly on the influence of the in utero
environment on health throughout the lifespan.
To conduct the proposed study, I will train in advanced biostatistics, systems biology and molecular biology
methods as I progress through the research aims with continual feedback from my advisory team throughout
our regularly scheduled meetings. Through formal coursework and the mentored guidance provided by Drs. Jia
Chen, Chris Gennings, Carmen Marsit, Ke Hao and Qian Lu, I will obtain the knowledge and training
necessary to develop into an independent, interdisciplinary researcher with a focus on elucidating the
molecular mechanism linking in utero environmental exposures to adverse birth outcomes.
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Intrauterine Metal Exposure, Placental Gene Networks and Fetal Growth
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批准号:10328257
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项目类别:
-
资助金额:$24.9万
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财政年份:2018
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负责人:Maya Ariane Deyssenroth
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依托单位:
海外基金