Clinical Specimen Management and Characterization Core
Clinical Specimen Management and Characterization Core
批准号:
8523022
负责人:
BEATRICE S KNUDSEN
金额:
$27.24万
依托单位国家:
美国
项目类别:
财政年份:
--
资助国家:
美国
项目状态:
已结题
起止时间:
至 2017-06-30
关键词:
AntibodiesBindingBiological AssayBiological MarkersBiologyBloodBlood specimenCatalysisCell membraneCellsChemicalsChemistryChemokine (C-C Motif) Receptor 5ClinicalCollaborationsComplexDataDevelopmentEmerging TechnologiesEnzymesEvolutionGalactosidaseGene ExpressionGenotypeGoalsHemolysinHourIn VitroIndividualInformaticsIntegral Membrane ProteinInvestigationLaboratoriesLigandsLipidsMalignant neoplasm of ovaryMeasurementMembraneMentorsMethodsMicrofluidicsModelingOilsPathologyPhasePhenotypePoliciesPopulationProcessProteinsProtocols documentationQuality ControlReactionResearchResearch ActivityResearch PersonnelReview CommitteeSamplingServicesSpecimenSpecimen HandlingStructureSystemTherapeuticTissuesTransmembrane TransportVesicleViral ProteinsWateranticancer researchassay developmentdirected evolutionfitnessinnovationmeetingsprogramsprotein expressionreceptorrepositoryresearch studysample collectionscreening
中文摘要
点击翻译按钮获取中文摘要
英文摘要
The chemical transformations of biology occur in a compartmentalized context inside the cell membrane.
Systematically studying this compartmentalized chemistry and harnessing its benefits for therapeutic
applications through directed enzyme evolution will require methods for controlled synthesis and functional
screening of cell-like compartments. Mentored research activities significantly expanded on current efforts in
microfluidic directed evolution by exploring circuitry for the controlled high-throughput synthesis of
monodisperse water droplets in oil for in vitro compartmentalization (IVC). This strategy Is enabling new
explorations of RNA's catalytic fitness landscape by prohibiting a single advantageous genotype from
dominating in the selective amplification reaction, and exaggerating neutral drift ofthe population. A nozzle
array microfluidic IVC (MIVC) circuit was developed for these experiments and enabled selections
encompassing l e 8 individuals per hour. Directed evolution of proteins with complex phenotypes (transport,
membrane display, catalysis) will form the theme for independent phase investigations. The pIVC system
will be used to synthesize monodisperse lipid vesicles for compartmentalization and functional display of
integral membrane proteins, P-galactosidase and hemolysin will serve as models for using the pIVC
processor to evolve new catalytic and selective transport functions on cytosolic and transmembrane
proteins, respectively. Long-tennn research program goals include evolving membrane receptors (CCR5 and
CD4) in lipid vesicles, selecting for enhanced binding of viral protein-receptor complexes, evolutionary
structure-function studies, and synthesizing membrane-bound evolvable ligands for applications In targeted
and decoy therapeutics.
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会议论文
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In vivo effects of sulforaphane supplementation on normal human prostate
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财政年份:--
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财政年份:--
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负责人:BEATRICE S KNUDSEN
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依托单位:
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