Prenatal Metal Mixtures, Fetal Growth, and the Role of MicroRNAs
Prenatal Metal Mixtures, Fetal Growth, and the Role of MicroRNAs
批准号:
10452576
负责人:
Caitlin Grace Howe
金额:
$23.51万
依托单位:
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:
已结题
起止时间:
2020-07-17 至 2024-06-30
关键词:
AbdomenAdultAffectAir PollutionAwardBiological MarkersBirth WeightBloodBlood specimenBostonCaliberCaliforniaCardiovascular DiseasesComplementComplexComplex MixturesDataDevelopmentDietEarly identificationEducational workshopEnrollmentEnvironmental EpidemiologyEnvironmental Risk FactorEpidemiologyEpigenetic ProcessEquationExposure toFeedbackFemurFetal DevelopmentFetal GrowthGene ExpressionGenesGestational AgeGoalsGrowthGrowth and Development functionHead circumferenceHealthHispanicIndividualInvestigationKnowledgeLeadLearningLengthLifeLinkLos AngelesLow Birth Weight InfantLow incomeMeasurementMeasuresMediatingMentorsMetal exposureMetalsMethodsMicroRNAsModelingMorbidity - disease rateMothersNewborn InfantNon-Insulin-Dependent Diabetes MellitusOutcomePatternPerinatologyPhasePlacentaPlasmaPlayPopulationPositioning AttributePregnancyResearchResearch PersonnelRisk FactorsRoleSiteSourceSumTimeToxic effectTrainingUmbilical Cord BloodUnited StatesUniversitiesUrineWeightWeights and MeasuresWomanadverse outcomebasecigarette smokecirculating microRNAcohortdrinking waterenvironmental stressorepigenomeexperiencefetalimprovedin uteroinfancymRNA Expressionmetal poisoningmortalitynovelpollutantprenatalprenatal exposurepreventprogramspublic health interventionsocial stressortoxic metaltraining opportunitytranscriptome sequencingultrasound
中文摘要
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英文摘要
PROJECT SUMMARY/ABSTRACT
Reduced fetal growth has been implicated in a broad range of adverse health outcomes. Growing evidence
suggests that toxic metal exposures adversely affect fetal growth, indicated by reduced fetal ultrasound
measurements and lower birth weight. Although most individuals are exposed simultaneously to multiple
metals, which may act additively or synergistically to reduce fetal growth, the majority of studies have focused
on the toxicity of individual metals. While the mechanisms underlying metal-induced reductions in fetal growth
are incompletely understood, there is evidence that epigenetic dysregulation, including altered microRNA
(miRNA) expression, contributes to these effects. In addition to epigenetically regulating gene expression,
maternal circulating miRNAs play important roles in maternal-placental-fetal crosstalk. However, the potential
role of maternal circulating miRNAs in mediating metal mixture effects on fetal growth is unknown. The goal of
the proposed project is to examine the impact of prenatal metal mixture exposures on fetal growth and to
determine whether altered maternal circulating miRNAs mediate these relationships. During the mentored K99
phase of this award, Dr. Howe will leverage existing data and biospecimens from 500 mother-newborn pairs in
the Maternal and Developmental Risks from Environmental and Social Stressors (MADRES) study, a low-
income predominately Hispanic pregnancy cohort based in Los Angeles, to investigate potential additive and
synergistic relationships between prenatal exposure to 15 metals and in utero growth and birth weight. To
accomplish this, she will expand metals exposure assessment in the MADRES pregnancy cohort and train in
methods for analyzing complex environmental mixtures, including weighted quantile sum regression and
Bayesian kernel machine regression. During the R00 phase, Dr. Howe will determine whether maternal
circulating miRNAs mediate metal mixture-fetal growth relationships, using structural equation models, and will
examine potential downstream effects by profiling mRNA expression levels within the maternal-placental-fetal
axis, using RNA-Seq, in a subset (N = 50) of mother-newborn pairs. Results from the proposed studies may be
used to improve the efficacy of public health interventions aimed at preventing metal-induced reductions in
fetal growth. Furthermore, they will increase knowledge of a potential underlying mechanism (altered maternal
circulating miRNAs) and may lead to the identification of early and relatively non-invasive biomarkers of metal
mixture exposures and reduced fetal growth. Dr. Howe has assembled a mentoring team, spanning the
University of Southern California, Boston University, and Emory University, with expertise in metals toxicity,
environmental mixtures modeling, epigenetic epidemiology, and perinatology. This team will provide ongoing
feedback and on-site training opportunities to complement coursework, workshops, and seminars, which will
support Dr. Howe’s transition to become an independent investigator with a research program that focuses on
the effects of early life metal mixture exposures on the epigenome and fetal growth.
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Prenatal Metal Mixtures, Fetal Growth, and the Role of MicroRNAs
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批准号:10218179
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项目类别:
-
资助金额:$24.15万
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财政年份:2020
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负责人:Caitlin Grace Howe
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依托单位:
Prenatal Metal Mixtures, Fetal Growth, and the Role of MicroRNAs
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批准号:10202881
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项目类别:
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资助金额:$24.9万
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财政年份:2020
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负责人:Caitlin Grace Howe
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依托单位:
Prenatal Metal Mixtures, Fetal Growth, and the Role of MicroRNAs
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批准号:9917770
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项目类别:
-
资助金额:$10.07万
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财政年份:2019
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负责人:Caitlin Grace Howe
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依托单位:
Influences of arsenic and folate on histone methylation marks
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批准号:8982481
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项目类别:
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资助金额:$3.66万
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财政年份:2015
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负责人:Caitlin Grace Howe
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依托单位:
海外基金