New PET /near IR-fluorescence tools for multimodal imaging in oncology
New PET /near IR-fluorescence tools for multimodal imaging in oncology
批准号:
8883769
负责人:
Richard Ting
金额:
$24.9万
依托单位国家:
美国
项目类别:
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-08-12 至 2017-07-31
关键词:
AddressAffectAnti-CEA AntibodyAntibodiesAntineoplastic AgentsBehaviorBiodistributionBlood - brain barrier anatomyCancer BiologyCancer ModelCancer cell lineCharacteristicsChargeClinicalColorectal CancerDataDatabasesDevelopmentDiscipline of Nuclear MedicineDrug TransportDyesExtinction (Psychology)FluorescenceFutureGenerationsGenetic EngineeringGoalsHistologyImageIntegrinsIntracellular TransportLabelLibrariesLigandsLymphaticMalignant NeoplasmsMalignant neoplasm of brainMentorsMindModalityModificationMolecularMolecular WeightMonitorMultimodal ImagingMusNeoplasm MetastasisNeoplasms in Vascular TissueOrganPatientsPeptide antibodiesPeptidesPharmaceutical PreparationsPharmacologic SubstancePhasePhase III Clinical TrialsPhotochemotherapyPositron-Emission TomographyPreclinical Drug EvaluationProcessProgress ReportsPropertyProteinsPublishingRadiopharmaceuticalsResearchResolutionShapesSystemTechniquesTechnologyTestingTherapeuticTherapeutic AgentsTimeTissuesTracerTrainingTumor AngiogenesisTumor BiologyUpdateaqueouscancer imagingdesigndirect applicationexperiencefluorophorehigh throughput screeningimaging probein vivoin vivo imaginginhibitor/antagonistmalignant breast neoplasmmolecular imagingmultimodalitynoveloncologypreventquantumradiotracerresearch studysmall moleculesuccesstooltumor
中文摘要
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英文摘要
SUMMARY/ABSTRACT - limit 30 lines – Richard Ting's K99/R00 application
We have recently published the application of new 18F-PET/NIRF (Positron emission
tomography/Near Infrared Fluorescence) multimodality imaging probes on the polydextran ligand
Lymphoseek (tilmanocept, Neoprobe), a ligand currently in phase III clinical trials as a 99mTc labeled species
for detecting lymphatic breast cancer metastasis.
The K99 phase of this research applies this recent success to very different new molecules including
peptides and proteins. We will apply the PET/NIRF probe to Angiopep 2, a 3 kD peptide for imaging drug
transport across the blood brain barrier, and to 55 kD anti-CEA T84.66 diabody, a genetically engineered
class of antibodies for imaging CEA positive tumors. These applications will allow us develop superior
tracers for imaging colorectal cancer and drug transport. Another goal of the proposed K99 research is the
generation of a library of different Integrin αvβ3 antagonists conjugated to PET/NIRF probes of differing
molecular weights and charge. The imaging of this library will allow us to simultaneously select for the best
probes for imaging tumor angiogenesis by PET and allow us to generate both PET and NIRF databases on
the behavior of different moieties in vivo. This database would allow us to rationally design new drugs that
accumulate in specific tissues (PET) while retaining the sub-cellular localization and inhibitory properties
(observed by NIRF) for which they were selected. Data from the imaging of this library can be used to
deliberately alter the in vivo biodistribution of new pharmaceuticals or select for probes that are specific for
different forms of cancers.
The first R00 phase aim attempts to advance PET/NIRF technology by exploiting the fact that
fluorescence is the modality of choice for high-throughput drug screening, We will modify the cancer probes
developed in the K99 with immobilizing technology to generate arrays that can indicate small changes in
tumor biology, such as increased tumor aggressiveness, and help determine a patient's treatment regime.
Desired compounds can be released from the array using aqueous 18F, to generate a PET probe, or
combination of probes for corroborative in vivo imaging. The fluorophore on the array will then be
substituted with photodynamic therapy (PDT) agents allowing for the selection of probes for PET guided
endoscopic PDT applications. Finally, a new application that allows for kit-like radiotracer labeling will be
applied to a new library of PET/NIRF small molecules that are capable of demonstrating intracellular
transport. These molecules will possess exterior functionality that is similar to clinical 99mTc tracers in order
to address the problem of recurring 99mTc shortages, a current problem in nuclear medicine today.
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New PET /near IR-fluorescence tools for multimodal imaging in oncology
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批准号:8906853
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项目类别:
-
资助金额:$23.8万
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财政年份:2014
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负责人:Richard Ting
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依托单位:
New PET /near IR-fluorescence tools for multimodal imaging in oncology
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批准号:8300566
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项目类别:
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资助金额:$9.0万
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财政年份:2012
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负责人:Richard Ting
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依托单位:
New PET /near IR-fluorescence tools for multimodal imaging in oncology
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批准号:8459516
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项目类别:
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资助金额:$9.0万
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财政年份:2012
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负责人:Richard Ting
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依托单位:
海外基金