NADHP Oxidase-mediated MC differentiation & Endothelial Dysfunction in HHcy
NADHP Oxidase-mediated MC differentiation & Endothelial Dysfunction in HHcy
批准号:
8476266
负责人:
Hong Wang
金额:
$48.38万
依托单位国家:
美国
项目类别:
财政年份:
2011
资助国家:
美国
项目状态:
已结题
起止时间:
2011-08-18 至 2016-05-31
关键词:
AccountingAdenovirusesAdhesionsAntibodiesBase SequenceBiological MarkersBlood VesselsBone Marrow TransplantationCardiovascular DiseasesCell ProliferationCellsCephalicConfocal MicroscopyCyclin ACystathionineDNADNA MethylationDNA MethyltransferaseDNA Modification MethylasesDNA-Binding ProteinsDataDoctor of PhilosophyEndothelial CellsEpigenetic ProcessEventFunctional disorderGenesGenetic TranscriptionGoalsHomocysteineHomocystineHumanHyperhomocysteinemiaHypermethylationImmunohistochemistryInfiltrationInflammationInflammatoryLeadLeukocytesLinkLiverMapsMediatingMessenger RNAModificationMusNADPNADPH OxidaseOxidasesOxidative StressPathogenesisPlasmaPrincipal InvestigatorReportingResearchRisk FactorsRoleSmall Interfering RNASmokingSpleenSplenocyteStaining methodStainsTestingTimeTissuesTransducersTransgenic MiceWaterZincbisulfitechromatin immunoprecipitationcytokineenhanced green fluorescent proteininhibitor/antagonistinsightintravital microscopymiddle cerebral arterymonocytenew therapeutic targetpressureprogramspromotervascular inflammation
中文摘要
描述(由申请人提供):新申请的总体目标是确定NADPH相关氧化应激在高同型半胱氨酸(HHcy)引起的单核细胞分化和内皮功能障碍中的作用和机制。本提案中待检验的假设是,HHcy导致SAH蓄积,导致NADHP氧化酶基因的低甲基化表观遗传修饰,导致NADPH氧化酶相关的氧化应激和炎性MC分化,促成血管功能障碍。本项目将利用三个相互关联的具体目标来研究这一假设。在目标1中,他们将表征HHcy小鼠中的MC分化/粘附和血管功能/炎症。在目标2中,他们将研究NADPH氧化酶激活和表观遗传修饰在小鼠原代脾细胞中Hcy诱导的MC分化中的作用和机制。在目标3中,他们将确定HHcy、SAH积累、DNA低甲基化和NADPH氧化酶活化在Tg-hCBS Cbs-/-小鼠中炎性MC分化和血管功能障碍中的作用。我们相信,这一建议的具体目标的完成可能会提供重要的见解同型半胱氨酸在心血管疾病中的作用,并确定强调机制。
英文摘要
DESCRIPTION (provided by applicant): The overall objective of new application is to determine the role and mechanism of NADPH-related oxidative stress in Hyperhomocysteinemia (HHcy)-caused monocyte differentiation and endothelial dysfunction. The hypothesis to be tested in this proposal is that HHcy causes SAH accumulation, resulting in hypomethylative epigenetic modification on NADHP oxidase gene, leading to NADPH oxidase-related oxidative stress and inflammatory MC differentiation, contributing to vascular dysfunction. This project will study this hypothesis utilizing three linked specific aims. In Aim 1, they will characterize MC differentiation/adhesion, and vascular function/inflammation in HHcy mice. In Aim 2, they will examine the role and mechanism of NADPH oxidase activation and epigenetic modification in Hcy-induced MC differentiation in mouse primary splenocytes. In Aim 3, they will define the role of HHcy, SAH accumulation, DNA hypomethylation, and NADPH oxidase activation in inflammatory MC differentiation and vascular dysfunction in Tg-hCBS Cbs-/- mice. It is believed that completion of the specific aims of this proposal may provide important insights into the role of Hcy in CVD, and identify the underline mechanism.
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海外基金