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Targeted Ultrasound Imaging of Angiogenic Receptors

Targeted Ultrasound Imaging of Angiogenic Receptors
血管生成受体的靶向超声成像
批准号:
7238640
负责人:
Flordeliza S Villanueva
金额:
$34.31万
依托单位国家:
美国
项目类别:
财政年份:
2004
资助国家:
美国
项目状态:
已结题
起止时间:
2004-07-01 至 2010-06-30
关键词:
AbbreviationsAccountingAcuteAddressAdhesionsAffectAnimalsAnterior Descending Coronary ArteryAntibodiesAtherosclerosisBindingBiological PhenomenaBlood VesselsCanis familiarisCardiovascular DiseasesCell Adhesion MoleculesCellsCessation of lifeChronicClassClinicalClinical TrialsComplexConditionContrast MediaContrast echocardiography procedureCoronaryCoronary ArteriosclerosisCoronary OcclusionsCoronary arteryCoronary heart diseaseCountCountryDailyDataData SetDetectionDevelopmentDiagnosticDiseaseEncapsulatedEnd PointEndothelial CellsEpitopesErythrocytesEvaluationExercise ToleranceFunctional disorderGasesGenesGoalsGraft RejectionGrowth FactorHeart DiseasesHeart TransplantationHeparin BindingHeterogeneityHindlimbHypoxiaICAM1 geneImageImaging TechniquesIn VitroInflammationIntercellular adhesion molecule 1InvasiveIschemiaIsotopesLabelLaboratoriesLeadLeftLife Support CareLigandsLipidsLocalizedMetabolismMethodsMicrobubblesModelingMonitorMonoclonal AntibodiesMyocardialMyocardial IschemiaMyocardiumNuclearNumbersObstructionOryctolagus cuniculusPatientsPerfusionPhosphotransferasesPhysiologicalProcessProtein IsoformsProtein OverexpressionRadiolabeledRattusReceptor Protein-Tyrosine KinasesRecombinantsResearchResolutionRestSimulateSkeletal MuscleStagingStandards of Weights and MeasuresStressSurfaceSymptomsTechniquesTestingTissuesTracerUltrasonographyUnited StatesVascular Endothelial Growth Factor ReceptorVascular Endothelial Growth Factorsameroidangiogenesisanimal databaseclinically relevantcremaster muscledesigndiabeticdisabilityexperiencehuman VEGF proteinin vivoin vivo Modelinsightintercellular cell adhesion moleculeintravital microscopymolecular imagingmortalitymyocardial hypoxiaprogramsradiotracerreceptorreceptor expressionresponsetherapeutic angiogenesistherapeutic targetuptake

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DESCRIPTION (provided by applicant): This research program will test the hypothesis that ischemic myocardium can be detected and imaged by labeling angiogenic receptors, and that such an approach will permit assessment of the efficacy of angiogenesis. Vascular endothelial growth factor-121 (VEGF121) is a non-heparin binding isoform of VEGF secreted in response to hypoxia that binds to endothelial cell-specific hypoxia-inducible tyrosine kinase receptors Fit-1 and KDR. This group has recently shown that surgically induced hindlimb ischemia in rabbits can be imaged in vivo as selective uptake of intravenously injected radiolabeled VEGF121. These data suggest that labeling of hypoxia-specific angiogenic receptors using the receptors' naturally occurring ligand may be a useful approach to detect ischemically stressed tissue. Because VEGF receptors (VEGFR) are endothelial-cell specific, a VEGFR-targeted imaging agent that remains within the intravascular space would be ideal. Accordingly, this proposal will develop a targeted ultrasound imaging agent comprised of an acoustically active lipid microbubble with recombinant human VEGF121 as the targeting ligand on the bubble surface. Based on previous experience, it is expected that transient adhesion of these microbubbles to microvasculature overexpressing VEGFR in ischemic tissue can be imaged with harmonic-based echocardiographic techniques. In stepwise fashion progressing from in vitro to in vivo models, the Specific Aims of this proposal are to address the following questions: (1) Do VEGF121-conjugated microbubbles (VEGF-bubbles) bind to endothelial cells overexpressing VEGFR in vitro, and how can bubble design be manipulated to optimize binding? (2) Do VEGF-bubbles bind to microvasculature overexpressing VEGFR in vivo? (3) Can in vivo VEGF-bubble binding be ultrasonically imaged and related to the magnitude of VEGFR expression? (4) Can VEGFR-targeted echocardiographic imaging be used to identify ischemia and angiogenesis in a clinically relevant canine model of progressive coronary occlusion and collateral development? The ultimate goal of this study is to develop a non-invasive, easily available, high-resolution method for quantifying the ischemic burden of tissue. Such a non-isotope approach could have advantages over existing clinical methods for detecting atherosclerotic disease employing stress and rest nuclear perfusion imaging, and may offer a sensitive method for assessing angiogenesis.
期刊论文(8)
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会议论文
DOI: 10.1038/ncpcardio1246
发表时间: 2008-08
期刊: NATURE CLINICAL PRACTICE CARDIOVASCULAR MEDICINE
影响因子: --
作者: [Villanueva, Flordeliza S., Wagner, William R.]
通讯作者: Wagner, William R.
DOI: 10.1016/j.jcmg.2009.05.006
发表时间: 2009-07
期刊: JACC. Cardiovascular imaging
影响因子: --
作者: [F. Villanueva]
通讯作者: F. Villanueva
DOI: 10.1021/acs.molpharmaceut.6b01033
发表时间: 2017-03-06
期刊: Molecular pharmaceutics
影响因子: 4.9
作者: [Wang J, Qin B, Chen X, Wagner WR, Villanueva FS]
通讯作者: Villanueva FS
Ultrasound Detection of Myocardial Ischemic Memory Using an E-Selectin Targeting Peptide Amenable to Human Application
使用适合人类应用的 E-选择素靶向肽对心肌缺血记忆进行超声检测
DOI: 10.2310/7290.2014.00006
发表时间: 2014-06-01
期刊: MOLECULAR IMAGING
影响因子: 2.8
作者: [Leng, Xiaoping, Wang, Jianjun, Villanueva, Flordeliza S.]
通讯作者: Villanueva, Flordeliza S.
Biological and Physical Mechanisms of ultrasound/microbubble-mediated therapeutic gene delivery across the endothelial barrier
Biological and Physical Mechanisms of ultrasound/microbubble-mediated therapeutic gene delivery across the endothelial barrier
Administrative supplement - Equipment
Training Program in Imaging Sciences in Translational Cardiovascular Research
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