Core of Advanced Platform Technologies Used for Remediation and Exploration
Core of Advanced Platform Technologies Used for Remediation and Exploration
批准号:
10559558
负责人:
Erin Marie Baker
金额:
$26.61万
依托单位国家:
美国
项目类别:
财政年份:
2022
资助国家:
美国
项目状态:
未结题
起止时间:
2022-03-03 至 2025-01-31
关键词:
AddressAffectAlgorithmsAnimalsBiologicalBiological ModelsBloodCarbonChemicalsCommunitiesCore FacilityDataData CollectionData SetDatabasesDecision MakingDevelopmentDoctor of PhilosophyEducationElectron MicroscopeElectron MicroscopyElectron energy loss spectroscopyEnsureEnvironmentEnvironmental PollutantsEvaluationGenomicsHazardous ChemicalsHealthHumanHuman ResourcesIndividualIonsKnowledgeLaboratoriesLengthMass Spectrum AnalysisMeasurementMethodsModernizationMolecularMonitorPSSO3PenetrationPhasePhenotypePoly-fluoroalkyl substancesPopulationProceduresProtocols documentationQualifyingReactionReagentResearchResearch PersonnelResource SharingRoleSamplingScanningSex DifferencesSignal Recognition ParticleSolidSpectrum AnalysisStable Isotope LabelingSuperfundTechniquesTechnologyTissuesUrineVariantWaterWorkX ray spectroscopyZebrafishcombinatorialcommunity engagementdashboarddetection limitgenome scienceshigh resolution imagingimprovedinnovationinstrumentationinterestion mobilitylipidomicsmetabolomicsnanometernovelparticlepublic databaseremediationspecies differencetechnology platformtooltranscriptome sequencingtranscriptomicstranslational engagementtransmission process
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ABSTRACT
CAPTURE
Responding to newly discovered environmental contaminants requires novel analytical approaches.
The Core of Advanced Platform Technologies Used for Remediation and Exploration (CAPTURE) will
provide analytical capabilities to the four projects in the NC State Superfund Research Center to enable
rapid, comprehensive assessment of PFAS presence. CAPTURE is comprised of the Genomic
Sciences Laboratory (GSL), the Analytical Instrumentation Facility (AIF), and the Molecular Education,
Technology, and Research Innovation Center (METRIC) at NC State, which have over $25M in modern
instrumentation and are operated by more than 20 PhD-level, highly qualified personnel. These
capabilities provide CAPTURE with the ability to explore the diversity of scientific questions with a broad
range of measurements including RNA-seq, materials characterization, and mass spectrometry
analyses for the known and unknown per- and polyfluoroalkyl substances (PFAS). New methods and
reagents will result from this work which will enable and inform the entire scientific community about
PFAS in the environment. Additionally, CAPTURE will enhance interactions among Center projects and
other cores, increasing their impact by ensuring synchronization of exposure measurements and
increasing their value in decision-making, translation, and community engagement.
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