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Molecular Mechanisms of Severe Diabetic Retinopathy

Molecular Mechanisms of Severe Diabetic Retinopathy
严重糖尿病视网膜病变的分子机制
批准号:
10580714
负责人:
Sarah X Zhang
金额:
$41.17万
依托单位国家:
美国
项目类别:
财政年份:
2020
资助国家:
美国
项目状态:
未结题
起止时间:
2020-02-01 至 2025-01-31
关键词:
AbbreviationsAblationAddressAnimal ModelApoptosisAreaBackground Diabetic RetinopathyBindingBlindnessBlood VesselsBlood capillariesBlood-Retinal BarrierCaspaseCell AgingCell Culture TechniquesCell DeathCellsCessation of lifeClinicalDataDevelopmentDiabetes MellitusDiabetic RetinopathyDiabetic mouseDisease ProgressionEndothelial CellsEndotheliumEnzymesEquilibriumEventExtravasationEyeFamily memberFibrosisGenesGeneticGenetic studyGlucoseGoalsGrowthHematopoieticHeritabilityHumanHuman GeneticsHydrogen PeroxideHypoxiaImpairmentIn VitroIndividualInflammasomeInflammationInjuryInsulin-Dependent Diabetes MellitusKnock-inKnock-in MouseKnockout MiceKnowledgeLipid PeroxidationMeasuresMediatingMembraneMitochondriaModelingMolecularMolecular TargetMusNADPH OxidaseNeuronsOutcomeOxidation-ReductionOxygenPathogenesisPathologicPathologyPathway interactionsPersonsPharmacotherapyPreventionPrevention approachPreventivePrimary Cell CulturesProductionProtein IsoformsProteinsPublishingReactive Oxygen SpeciesResearchRetinaRetinal DiseasesRetinal NeovascularizationRoleSignal PathwaySignal TransductionStimulusStreptozocinSystemTestingTherapeuticTherapeutic EffectTimeTissuesTransgenic OrganismsType 2 diabeticUp-RegulationVascular DiseasesVascular PermeabilitiesVisual impairmentWorkactivating transcription factor 4aging populationbrain endothelial cellcell injuryconditional knockoutdiabeticdiabetic patientdisorder preventionendoplasmic reticulum stressexperimental studygenome wide association studygenome-wide linkagehuman diseasein vivoinhibitorinsightmacular edemamouse modelnovelnovel strategiesoverexpressionpharmacologicpre-clinicalpreventproliferative diabetic retinopathyretina blood vessel structureretinal damagerisk variantsenescencetherapeutic targettraitunpublished worksvascular abnormality

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英文摘要
Abstract: Major causes of vision loss in people with diabetes include diabetic macular edema and severe diabetic retinopathy (including severe non-proliferative diabetic retinopathy and proliferative diabetic retinopathy), both of which are associated with extensive injury of retinal endothelial cells; however, the molecular mechanisms underlying the progressive damage to endothelial cells in diabetes are poorly understood. Further, despite preventable measures, severe diabetic retinopathy still occurs in a large number of diabetic individuals eventually leading to blindness. Thus, identifying novel molecular targets to prevent the progression of diabetic retinopathy is an unmet need. In this project, we propose to test the role of NADPH oxidase 4 (Nox4) in retinal endothelial cells as a novel molecular target for the prevention and treatment of severe diabetic retinopathy. In recent studies, we have shown that Nox4 is a major isoform of NADPH oxidases in retinal endothelial cells and Nox4 expression is upregulated in retinal blood vessels in animal models of diabetic retinopathy. Genetic ablation of Nox4 gene in endothelial cells reduces retinal vascular permeability in diabetic mice and alleviates aberrant new vessel growth in oxygen-induced retinopathy. In contrast, overexpression of Nox4 in endothelial cells is sufficient to induce retinal vascular leakage and degeneration. Furthermore, a recent genome-wide association study (GWAS) identified Nox4 as a potential risk gene for severe diabetic retinopathy. Collectively, these experimental and clinical findings suggest an important role of Nox4 in diabetes-mediated endothelial cell injury and retinal vasculopathy. However, the mechanisms by which Nox4 induces endothelial injury and its relevance to human disease remain an understudied area. In this project, we will first characterize Nox4 expression in human retinas with different stages of diabetic retinopathy. Using an inducible endothelial cell specific conditional knockout mouse line, we will delete Nox4 at various time points after diabetes onset to establish the role of endothelial Nox4 in the development and progression of diabetic retinopathy. We will investigate the mechanisms of Nox4- mediated endothelial death and senescence and elucidate novel signaling pathways activated by Nox4 upregulation in endothelial cells. Finally, we will test novel pharmacological inhibitor that specifically targets Nox4 for its preventive and therapeutic effects on diabetic retinopathy. We anticipate that the successful completion of the proposed studies will not only provide mechanistic insight of diabetic retinopathy but also develop new treatment that targets a risk gene identified by human genetic study for prevention of severe diabetic retinopathy.
期刊论文(8)
专著(0)
科研奖励(0)
会议论文
Sustained Upregulation of Endothelial Nox4 Mediates Retinal Vascular Pathology in Type 1 Diabetes.
内皮 Nox4 的持续上调介导 1 型糖尿病的视网膜血管病理。
DOI: 10.2337/db22-0194
发表时间: 2023
期刊: Diabetes
影响因子: 7.7
作者: [Tang,Xixiang, Wang,Jinli, Abboud,HannaE, Chen,Yanming, Wang,JoshuaJ, Zhang,SarahX]
通讯作者: Zhang,SarahX
DOI: 10.1186/s13024-022-00528-w
发表时间: 2022-03-28
期刊: Molecular neurodegeneration
影响因子: 15.1
作者: [McLaughlin T, Medina A, Perkins J, Yera M, Wang JJ, Zhang SX]
通讯作者: Zhang SX
DOI: 10.1167/iovs.64.14.40
发表时间: 2023-11-01
期刊: Investigative ophthalmology & visual science
影响因子: 4.4
作者: []
通讯作者:
DOI: 10.4103/1673-5374.335691
发表时间: 2022-09
期刊: Neural regeneration research
影响因子: 6.1
作者: [Hanineva A, Park KS, Wang JJ, DeAngelis MM, Farkas MH, Zhang SX]
通讯作者: Zhang SX
共 6 条
    Molecular Mechanisms of Severe Diabetic Retinopathy
    Study of the ER-mitochondria interface as a new target in diabetic retinopathy
    ER Stress and Diabetic Retinopathy
    ER Stress and Diabetic Retinopathy
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