Nanopore Based Methods for Enantiomer Differentiation
Nanopore Based Methods for Enantiomer Differentiation
批准号:
8001793
负责人:
Eric Ervin
金额:
$16.68万
依托单位国家:
美国
项目类别:
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-09-15 至 2012-03-14
关键词:
ArtsBindingBiologicalCaliberChemicalsClinicalColumn ChromatographyCyclodextrinsDetectionDevelopmentDevicesDimensionsDiscriminationDrug IndustryDrug KineticsElectrodesElectronicsElementsGlassGoalsHemolysinHybridsLipid BilayersLiquid substanceManufacturer NameMass Spectrum AnalysisMechanicsMedicalMembraneMethodsModificationMolecularNatureOrganic solvent productOrganismPharmaceutical PreparationsPharmacologic SubstancePhaseProcessPropertyResearch PersonnelSamplingScienceScreening procedureSensoryShapesSurfaceSystems AnalysisTechnologyTimebasechemical propertychemical stabilitycostenantiomerflexibilityimprovedinstrumentationnanodisknanoporeportabilitypressurepreventprogramsprototypepublic health relevanceresearch studysensorsingle moleculevoltage
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): The overall aim of this Phase I program is to develop a new, robust nanopore platform for the differentiation of pharmacologically relevant enantiomers in clinical samples. Enantiomer screening is an important aspect of drug manufacturing and pharmacokinetic studies. In order to determine what an organism's body does to a drug after administration, rapid analysis methods with low limits of detection are needed. EBS plans to expand on our current glass nanopore technology to develop a robust platform capable of this level of detection. This project will greatly improve on current enantiomer differentiation methods, reducing operating times and costs, and making advanced enantiomer screening capabilities available to more researchers, medical professionals, and drug manufacturers.
PUBLIC HEALTH RELEVANCE: A new highly-stable nanopore platform that is ideally suited for sensory enantiomer screening applications is being developed. The robustness of this platform will allow clinical samples to be analyzed at a low cost, with minimal time and instrumentation needed.
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