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Investigation of 9-cis Retinoic Acid as a Novel Treatment for Post-Surgical Lymphedema

Investigation of 9-cis Retinoic Acid as a Novel Treatment for Post-Surgical Lymphedema
9-顺式视黄酸作为术后淋巴水肿新疗法的研究
批准号:
9414934
负责人:
Alex K. Wong
金额:
$17.8万
依托单位国家:
美国
项目类别:
财政年份:
2017
资助国家:
美国
项目状态:
已结题
起止时间:
2017-02-01 至 2021-01-31
关键词:
AIDS with Kaposi&aposs sarcomaAdjuvant RadiotherapyAdverse effectsAffectAnimal ModelAnimalsBindingBlood VesselsBreastCancer SurvivorshipCell Cycle CheckpointCell ProliferationClinicalClinical TrialsCompression BandageCosmeticsDataDefectDevelopmentDevelopment PlansDiseaseDisease ProgressionDisease modelDistalDoctor of PhilosophyDoseExcisionFDA approvedFGFR3 geneFibroblast Growth Factor ReceptorsFunctional disorderFundingGenitourinary systemGoalsGrantGreen Fluorescent ProteinsGrowth FactorHindlimbHistologicHumanIn VitroIncidenceIndividualInfectionInjuryInternationalInvestigationKnowledgeLaboratoriesLeadLimb structureLinkLiquid substanceLymphLymph node excisionLymphangiogenesisLymphaticLymphatic Endothelial CellsLymphatic vesselLymphedemaMaintenanceMalignant NeoplasmsManual Lymphatic DrainageMeasuresMediatingMedicalMentorsModalityMolecular AnalysisMusNeoplasm MetastasisOperative Surgical ProceduresPathologicPathway interactionsPatientsPelvisPersonal SatisfactionPharmaceutical PreparationsPharmacologyPharmacotherapyPhenotypePhysiologicalPlant RootsPlayPrincipal InvestigatorPumpQuality of lifeRattusReceptor SignalingRecurrenceReporterReportingReproducibilityResearch PersonnelRiskScientistSeriesShunt DeviceSignal TransductionSkin Kaposi&aposs SarcomaSolidSurgeonSurgical FlapsSurgical ModelsSwellingSystemTherapeuticTimeTissue DonorsTissuesTransgenic OrganismsTretinoinUnited StatesUnited States National Institutes of HealthVascular Endothelial Growth Factor CVascular Endothelial Growth Factor DVascular Endothelial Growth FactorsVenousWorkalitretinoinbasecareer developmentclinical effectdensitydisabilityimprovedin vivoknockout animallymph flowlymph nodesmeetingsmouse modelnovelpeptide P3pre-clinicalpreventpromoterreduce symptomsskin lesionsmall moleculetranslation to humanstranslational studytumor

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Project Summary/Abstract Lymphedema is an incurable condition characterized by tissue swelling after lymphatic damage. It affects over 140 million individuals worldwide and is associated with poor quality of life due to extremity disability, disfigurement, and risk for recurrent limb-threatening infection. In the US, lymphedema is usually due to lymph node resection in association with the treatment of malignancies such as breast or pelvic tumors. There are currently no known medical therapies that can prevent or reverse the clinical progression of lymphedema in humans. However, recent data suggests that surgical transfer of vascularized lymph nodes (VLN) to replace damaged lymph nodes or divert lymphatic flow from a distal extremity may limit and even reverse disease progression. Since lymphatic damage and backflow is the root cause of lymphedema, we hypothesize that exogenous stimulation of lymphangiogenesis at the time of the initiating lymphatic injury may be an effective strategy to prevent and/or treat lymphedema. We have previously demonstrated that 9-cis retinoic acid (9-cis RA) can promote lymphangiogenesis in vitro and can limit lymphedema in vivo. The specific aims of this proposal are: 1) To elucidate the mechanism by which 9-cis RA acts to minimize surgically induced lymphedema in vivo; 2) To determine the minimal effective dose (MED) of 9-cis RA necessary to prevent post- surgical lymphedema; and 3) To determine effect of 9-cis RA on vascularized lymph node flap transfers (VLN) using a novel transgenic fluorescent lymphatic reporter rat. We expect data from these studies to support rapid translation to human clinical trials, especially since 9-cis RA (Alitretinoin) is already FDA approved. Data from this proposal has the potential to re-purpose 9-cis RA as the first pharmacologic agent used to significantly impact the onset and progression of secondary lymphedema. Dr. Alex Wong, the principal investigator of this grant, is a surgeon-scientist who has a long-term goal of becoming an independent investigator in the field of lymphedema. He goal is to become an expert in RA therapy for lymphedema and lead clinical trials using RA and other modalities. Dr. Young-Kwon Hong, PhD is the primary mentor for this grant, is an international expert in lymphagiogenesis and lymphedema. He is an established investigator with NIH R-series funding and has a solid track record in mentoring PhD and MD scientists to independence. The proposed career development plan that integrates scientific investigation, formal course work, and frequent meetings to assess scientific progression will be essential for Dr. Wong's goals towards independence.
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Retinoic Acid Induced Lymphangiogenesis for Post-surgical Lymphedema
Retinoic Acid Induced Lymphangiogenesis for Post-surgical Lymphedema
Retinoic Acid Induced Lymphangiogenesis for Post-surgical Lymphedema
Mitigation of lymphatic injury by retinoic acid therapyin a large animal model
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