Role of Epigenetically Active Environmental Compounds in Neurodevelopmental Disorders
Role of Epigenetically Active Environmental Compounds in Neurodevelopmental Disorders
批准号:
10219009
负责人:
ALEXEY V TERSKIKH
金额:
$19.5万
依托单位国家:
美国
项目类别:
财政年份:
2021
资助国家:
美国
项目状态:
已结题
起止时间:
2021-04-21 至 2023-03-31
关键词:
3-DimensionalASD patientATAC-seqAddressAffectAntidotesAromatic Polycyclic HydrocarbonsBioinformaticsBiologicalBiological AssayBiological ProcessBrainCase StudyCell DeathCell LineCellsChIP-seqChemicalsChildCognitiveCollectionDataData SetDecision MakingDevelopmentEnvironmentEpigenetic ProcessExposure toFemaleFetal DevelopmentFlowchartsFrequenciesFutureGenotypeGoalsGuidelinesHumanHuman bodyIn VitroIndividualLaboratoriesLibrariesLinkMachine LearningNeuritesNeurodevelopmental DisorderNeuronal DifferentiationPatientsPatternPlant RootsProcessProtective AgentsPublishingRegistriesRegulationRiskRoleServicesTechniquesTestingThalidomideToxic Environmental SubstancesToxic effectToxicologyVertebratesadverse outcomebasebehavioral outcomebisphenol Acell growthcost effectivecytotoxicitydashboardenvironmental chemicalepigenomeexperimental studyhigh throughput screeninghistone modificationhuman modelin vivoinduced pluripotent stem cellinsightmalemanmicroscopic imagingnerve stem cellneurodevelopmentnovelnovel strategiesphthalatesprenatal exposurerelating to nervous systemscreeningself-renewalsmall molecule librariesstemstem cell fatestem cell modelstem cellssynaptogenesistooltranscriptome sequencing
中文摘要
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英文摘要
PROJECT SUMMARY
Neurodevelopmental disorders (NDDs), are increasingly recognized as originating from dysregulation of early
brain development, which represents a window of vulnerability to environmental compounds. Environmental
compounds may alter neurodevelopment via epigenetic mechanisms, which may not induce massive cell
death, but change the brain function through their epigenetic effect on stem cell fate and lineage development.
However, tools to systematically examine the epigenetic impact of environment on neurodevelopment are
lacking. Here we employ Microscopic Imaging of Epigenetic Landscape (MIEL) to screen ToxCast e1k
chemical library (1800 compounds) and to characterize hits that alter epigenetic landscape of human neural
precursors without inducing cytotoxicity. Recognizing environmental insults and understanding their
mechanism of action will enable the development of regulations and guidelines aimed at avoiding such insults
and the development of antidotes and protective agents when exposure is unavoidable.
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