Next-Generation Quantum Dots for Molecular and Cellular Imaging of Cancer
Next-Generation Quantum Dots for Molecular and Cellular Imaging of Cancer
批准号:
8547022
负责人:
Andrew Michael Smith
金额:
$22.91万
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:
2010-09-03 至 2015-07-31
关键词:
Active Biological TransportAdsorptionAlloysAntibodiesArtificial nanoparticlesAwardBehaviorBindingBiologicalBiotinBloodBlood CirculationCancer BiologyCaveolaeCellsChemicalsChemistryColorComplexCrowdingDataDevelopmentDiffusionDrug Delivery SystemsDrug FormulationsElectronicsEngineeringEnsureEnvironmentExhibitsFluorescenceFluorescent DyesFluorescent ProbesGenerationsGoalsHistidineHumanImageInterdisciplinary StudyLeadLengthLigandsMalignant NeoplasmsMechanicsMediatingMedicineMentorsMetalsMicroscopicMicroscopyModelingNanotechnologyNeoplasms in Vascular TissueOpticsPenetrationPeptidesPharmaceutical PreparationsPharmacotherapyPhasePostdoctoral FellowProcessPropertyProteinsPumpQuantum DotsRecombinant ProteinsResearchResearch InstituteResearch PersonnelResearch Project GrantsResearch ProposalsResistanceSemiconductorsSeriesSerum ProteinsSiteSolid NeoplasmStreptavidinSurfaceSurface PropertiesSystemTechniquesTechnologyTherapeuticTimeTissuesTrainingTransport ProcessTreatment EfficacyUniversitiesWorkaerobic respiration control proteinbasecancer imagingclinical applicationclinically significantdesignimprovedin vivointerstitialintravital microscopymacromoleculemalignant breast neoplasmmolecular/cellular imagingnanocrystalnanoparticlenext generationnovelparticleprotein aminoacid sequencequantumresearch studyself assemblysingle moleculesurface coatingtargeted deliverytranscytosistumortumor microenvironmentuptake
中文摘要
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英文摘要
Project Summary
The aim of this research proposal is to develop a new class of fluorescent nanoparticles for highly sensitive
and multicolor imaging of the tumor microenvironment in vivo toward understanding and improving
nanoparticle drug delivery. We will focus on semiconductor quantum dots (QDs), which are nanocrystals that
exhibit bright fluorescence and unique optical and electronic properties. We have recently designed a new
class of quantum dots called 'alloyed quantum wells,' which have equalized fluorescence brightness across a
broad spectrum of colors. This novel property is not available from organic dyes, fluorescent proteins, or
conventional quantum dots, and will enable quantitative studies of nanoparticle drug delivery to solid tumors.
The basic idea is that we can modify the size, surface chemistry, or targeting ligands on these multicolor
probes to model nanoparticle drug formulations, which can then be quantitatively compared for uptake and
penetration in solid tumors. Because these particles are immensely bright on the single molecule level,
intravital microscopy of solid tumors will allow a single-molecule, mechanistic understanding of the rate-limiting
steps of drug delivery in a multicolor fashion. This simultaneous multicolor approach is critical for comparisons
in the heterogeneous tumor microenvironment, and is not possible with conventional optical probes. In this
proposal, we will optically engineer these nanoparticles, develop inert surface coatings for compact sizes and
long circulation times in blood, and develop new high-precision bioconjugation strategies based on self-
assembly principles. We will use these new probes to image the microscopic processes of targeted-delivery to
tumors, concentrating on caveolae-mediated transcytosis, an active transport process that has recently been
shown to efficiently pump nanoparticles from the tumor blood vessels into the interstitial tissue. These studies
will implement highly relevant orthotopic models of human breast cancer that will ensure clinical significance of
the findings. During the mentored phase of this award, the candidate will be co-mentored by Dr. Shuming Nie
of Emory University and Dr. Jan Schnitzer of the Proteogenomic Research Institute for Systems Medicine, and
will be trained in the use of orthotopic models of human cancer, intravital microscopy techniques, and antibody-
based tumor targeting strategies. Both of these mentors are leaders in their respective fields of
nanotechnology and cancer biology, which will enable a convergence of expertise to guide this interdisciplinary
research project and to facility the transition of the candidate from a mentored postdoctoral fellow to an
independent investigator in an academic setting.
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会议论文
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项目类别:
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依托单位:
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批准号:8009750
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项目类别:
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依托单位:
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批准号:8466012
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项目类别:
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资助金额:$24.9万
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负责人:Andrew Michael Smith
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依托单位:
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批准号:8689972
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项目类别:
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资助金额:$23.12万
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财政年份:2010
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负责人:Andrew Michael Smith
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依托单位:
海外基金