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Novel Antiangiogenic Peptides for Treatment of Exudative AMD

Novel Antiangiogenic Peptides for Treatment of Exudative AMD
用于治疗渗出性 AMD 的新型抗血管生成肽
批准号:
8837019
负责人:
NADER SHEIBANI
金额:
$114.85万
依托单位国家:
美国
项目类别:
财政年份:
2013
资助国家:
美国
项目状态:
已结题
起止时间:
2013-03-01 至 2016-02-29
关键词:
Adverse effectsAgeAge related macular degenerationAmericanAmino AcidsAngiogenesis InhibitorsAnimal ModelAnimalsApoptosisApoptoticAttenuatedAvastinBasic ScienceBenchmarkingBiomedical EngineeringBlindnessBlood VesselsBypassChargeChemicalsChemistryChoroidChoroidal NeovascularizationChronicClinicalClinical ResearchCollaborationsCyclic GMPDevelopmentDiseaseDisease ProgressionDoseDrug Delivery SystemsDrug FormulationsEpithelialEventExudative age-related macular degenerationEyeFrequenciesGenetic TranscriptionGoalsGrowthHalf-LifeHealthHumanHydrolysisImageImaging technologyIn VitroInjectableInjection of therapeutic agentInstitutesLabelLasersLeadLifeLightLongitudinal StudiesLucentisMarketingModelingMolecular MimicryMonoclonal Antibody R24MusNanoGelNational Eye InstituteNebraskaNeuronsOphthalmologyPUVA PhotochemotherapyParentsPathogenesisPediatricsPeptidesPharmaceutical PreparationsPhasePhysiologicalPigmentsPolymersProcessProdrugsProductionProteinsRegimenResearch PersonnelRetinalRetinal DiseasesRodentSafetyScheduleSignal TransductionTestingThrombospondin 1Toxic effectToxicologyTranslatingTranslational ResearchTreatment ProtocolsUniversitiesUrologyVariantVascular Endothelial Growth FactorsVision DisordersWisconsinangiogenesisaqueousbaseblocking factordesigndrug developmenteffective therapyefficacy testingimprovedin vivoin vivo imaginginhibitor/antagonistmimeticsmimicrynanoformulationnanomedicineneovascularneovascularizationnew growthnovelocular angiogenesisocular neovascularizationphase I trialpre-clinicalpreventprogramsresearch studyresidencesafety testingscreeningtumor growth

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DESCRIPTION (provided by applicant): An interdisciplinary consortium of investigators from the Departments of Ophthalmology and Pediatrics at the University of Wisconsin in collaboration with the Northwestern University Chemistry of Life Processes Institute, Biomedical Engineering, Urology, and Pediatrics, and the University of Nebraska Center for Drug Delivery and Nanomedicine, proposes to increase the pace at which basic science discoveries on disease mechanisms can be translated into therapies for exudative age-related macular degeneration (AMD), a stated goal of the R24 National Eye Institute Translational Research Program on Therapy for Visual Disorders. This scientific partnership will employ its diverse scientific expertise to characterize and test potential therapies for exudative AMD in animal models by using a combination of cutting-edge physiological, chemical, analytical and imaging approaches. By screening novel peptides derived from endogenous inhibitors of angiogenesis for their ability to prevent neovascularization in animal models that mimic AMD, we will accelerate drug development before testing in humans. Improving drug delivery to the eye as an integral part of these experiments will also be a high priority. Specific goals of this project are to: (1) determin whether the peptide mechanisms of action in the eye are through their mimicry of these natural inhibitors; (2) Produce and identify optimal new derivatives of benchmark peptides best suited to intravitreal treatment of AMD, where these are ranked by efficacy in CNV models, individually and in combination; (3) Select and tested the most active peptide(s) and their most slowly cleared formulations for efficacy in AMD models. The best candidate(s) will undergo GLP production and then safety testing, including retinal safety to select a suitable new peptide-based entity for clinical development; and (4) Establish preclinical basis for ultimate human treatment protocol for this entity through animal models of retinal disease examined via state-of-the art in vivo retinal imaging and histopathological analysis. Ultimately, the experimental result of these interrelated aims will guide us in developing more successful therapies for those afflicted by currently incurable blinding diseases with a neovascular component.
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