AGE-induced Phenotype of the Retinal Pigment Epithelium
AGE-induced Phenotype of the Retinal Pigment Epithelium
批准号:
7676660
负责人:
James T Handa
金额:
$53.83万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2001
资助国家:
美国
项目状态:
已结题
起止时间:
2001-07-01 至 2012-08-31
关键词:
Acquired BlindnessAcuteAddressAdvanced Glycosylation End ProductsAgeAge related macular degenerationAgingApolipoproteinsApoptosisAtherosclerosisBiochemicalBiologyBlood CirculationBruch&aposs basal membrane structureCellsChronicComplementComplement ActivationComplexDataDepositionDevelopmentDiseaseEnzymesFABP4 geneFatty AcidsFundingGeneticHumanHyperlipidemiaIn VitroInflammationIngestionInvestigationKnock-outKnockout MiceLabelLinkLipidsLipoproteinsLiverLow-Density LipoproteinsMeasuresMediatingModificationMusPathway interactionsPatientsPhenotypePhotoreceptorsPreventionProcessProteinsReactionRecyclingRoleSchemeSeriesSerumSiteSourceStagingStructure of retinal pigment epitheliumTherapeutic InterventionTimeUnited Statesage relatedapolipoprotein B-48basecrosslinkfatty acid-binding proteinsglycationin vivoinsightinterdisciplinary approachintravenous injectionloss of functionlow density lipoprotein inhibitornormal agingpreventresearch study
中文摘要
描述(由申请人提供):在美国,年龄相关性黄斑变性(AMD)是获得性失明的主要原因。早期疾病患者的预防和治疗选择有限且无效。为了解决这一缺陷,本建议侧重于早期疾病的机制。有证据表明,视网膜色素上皮(RPE)和布鲁赫膜的老化是遗传和环境影响累积的结果。这些变化有助于为AMD的发展奠定基础。在与“正常”衰老向AMD转变相关的许多细胞和生化变化中,关键因素包括i) RPE的凋亡,ii)载脂蛋白B100脂蛋白的积累和Bruch膜的基础沉积,以及iii)补体介导的炎症。更深入地了解这些过程之间的生物学和关系,不仅可以深入了解早期AMD的机制,而且可以为治疗干预提供靶点。我们之前的资助期专注于晚期糖基化终产物(AGEP),即由基质中一系列非酶糖基化反应形成的交联,如何改变RPE-Bruch膜表型。来自这些研究的信息帮助我们提出了以下相互关联的假设:1)RPE中与衰老相关的脂质积累刺激脂蛋白分泌,如果过量,细胞凋亡;2)与衰老相关的Bruch膜变化(即AGEP交联)促进脂蛋白的保留和修饰;3)修饰的脂蛋白诱导补体活化,进而促进细胞凋亡和基础沉积。我们的总体策略是利用多学科方法产生的协同效应,该方法将使用体外实验,转基因小鼠和人类组织病理学相关性来解决我们的假设,具有以下具体目标:确定脂肪酸积累是否刺激RPE分泌脂蛋白,如果分泌途径超载,脂肪酸积累是否导致RPE凋亡。2)。确定i) Bruch膜中脂蛋白的来源,ii)晚期糖基化终产物(AGEP)相关的Bruch膜变化是否促进脂蛋白潴留。3)。确定保留的脂蛋白是否诱导补体介导的炎症,以及这是否与RPE凋亡和基底沉积形成有关。
英文摘要
DESCRIPTION (provided by applicant): Age-related macular degeneration (AMD) is the leading cause of acquired blindness in the United States. Patients with early disease suffer from limited and ineffective options for prevention and treatment. To address this shortcoming, this proposal focuses on the mechanisms underlying early disease. Evidence suggests that aging of the retinal pigmented epithelium (RPE) and Bruch membrane is the result of accumulated genetic and environmental influences. These changes help to set the stage for the development of AMD. Among the many cellular and biochemical changes associated with the transition from "normal" aging to AMD, critical factors include i) apoptosis of the RPE, ii) accumulation of apolipoprotein B100 lipoproteins and basal deposits in Bruch membrane, and iii) complement-mediated inflammation. A more thorough understanding of the biology and relationship between these processes will not only provide insights into the mechanisms of early AMD, but also targets for therapeutic intervention. Our previous funding period focused on how advanced glycation endproducts (AGEP), cross-links formed by a series of nonenzymatic glycation reactions in the matrix, altered the RPE-Bruch membrane phenotype. Information from these investigations has helped us formulate the following inter-related hypotheses: i) aging-related lipid accumulation in the RPE stimulates lipoprotein secretion, and if excessive, apoptosis, ii) aging-related changes (i.e. AGEP cross-links) to Bruch membrane promote lipoprotein retention and modification, and iii) modified lipoproteins induce complement activation which in turn, contributes to apoptosis and basal deposits. Our overall strategy is to take advantage of the synergy that results from a multidisciplinary approach that will use in vitro experiments, genetically modified mice, and human histopathologic correlation to address our hypotheses with the following specific aims: 1.) Determine whether fatty acid accumulation stimulates lipoprotein secretion by the RPE, and if the secretion pathway is overloaded, whether fatty acid accumulation leads to RPE apoptosis. 2.) Determine i) the origin of lipoproteins in Bruch membrane, and ii) whether advanced glycation endproduct (AGEP)-related changes to Bruch membrane promote lipoprotein retention. 3.) Determine whether retained lipoproteins induce complement mediated inflammation and whether this is linked to RPE apoptosis and basal deposit formation.
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会议论文
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Nrf2 signaling and oxidative stress in Age-related macular degeneration
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Nrf2 signaling and oxidative stress in Age-related macular degeneration
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依托单位:
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批准号:10655404
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海外基金