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Interactive Signaling Modules in Vascular Inflammation

Interactive Signaling Modules in Vascular Inflammation
血管炎症中的交互式信号模块
批准号:
8307874
负责人:
LINDA H SHAPIRO
金额:
$169.98万
依托单位国家:
美国
项目类别:
财政年份:
2002
资助国家:
美国
项目状态:
已结题
起止时间:
2002-07-01 至 2014-05-31
关键词:
AdhesionsAdhesivesAdultAffectAgeAnimal ModelApoptosisApoptoticAreaArterial Fatty StreakAtherosclerosisBiochemicalBiochemistryBiologicalBiological ProcessBiologyBlood VesselsCardiovascular DiseasesCause of DeathCell CommunicationCell physiologyCell surfaceCellsCellular biologyCessation of lifeChronicClear CellCoagulation ProcessComplexConnecticutConsensusCoupledDengue Hemorrhagic FeverDevelopmentDiabetes MellitusDiagnosticDisciplineDiseaseEconomic BurdenElderlyElementsEndothelial CellsEndotheliumEnvironmentEssential HypertensionEventFoam CellsFosteringFunctional disorderGTP-Binding ProteinsGeneticGoalsHealthHealth ExpendituresHeart DiseasesHematopoieticHistologyHome environmentHomingHumanImmuneIncidenceInflammationInflammatoryIntegrinsInvestigationIschemiaKnowledgeLeadLesionLipidsLupusMolecularMorbidity - disease rateMusMyeloid CellsMyocardial InfarctionNatural Killer CellsNeoplasm MetastasisNeuropathyObstructionOrganismPathogenesisPathologicPathologyPathway interactionsPharmacologic SubstancePhenotypePhysiologicalPhysiologyPreventionProcessProgram Research Project GrantsReceptor SignalingRegulationResearchResearch PersonnelRetinal DiseasesRheumatoid ArthritisRisk FactorsRoleRuptureSepsisSignal PathwaySignal TransductionSignal Transduction PathwayStrokeSystemT-LymphocyteTechnologyTherapeuticThrombosisTissuesTranslationsTyrosine PhosphorylationUnited StatesUniversitiesVascular Endothelial CellVascular SystemWomanalanine aminopeptidaseatherogenesisautoimmune vasculitisbaseblood glucose regulationblood lipidbody systemcell behaviorcell injurycell motilitycell typecytokinefluorescence imagingin vivoinhibitor/antagonistinsightinterdisciplinary approachinterestinvestigator trainingmacrophagemast cellmigrationmolecular pathologymonocytemortalitymouse modelmultidisciplinarynovelnovel strategiesnovel therapeuticsoncologyprematureprogramsprotein activationsexsphingosine 1-phosphatetherapeutic developmenttransplant associated vasculopathyvascular inflammation

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中文摘要
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英文摘要
The competitive renewal of the program project application "Interactive signaling modules in vascular inflammation" is focused on the process of inflammatory changes in the vessel wall that lead to atherosclerosis. The program brings together seven independent investigators interested in the vascular biology. The theme of the program is to define molecular mechanisms important for pathologic inflammatory events with a focus on myeloid cells. The central hypothesis is that interactions between distinct signal transduction modules influence fundamental cellular processes such as cell-cell interaction, cell migration, inflammation, death and engulfment of apoptotic cells, ultimately altering the pathogenesis and progression of atherosclerosis. Each project in the program focuses on a unique aspect of the theme to advance our understanding of inflammatory vascular phenotypes. Project 1 (Hla) proposes to investigate the role of sphingosine 1-phosphate on macrophage inflammasome function and atherogenesis. This project shares several common interests with Project 2 (Wu), which is focused on PLCB regulation of macrophage apoptosis and atherogenesis. Project 3 (Han) focuses on the process of cell-cell recognition process by which apoptotic cells are cleared from the vascular wall. Thus, this project has common interests as projects 2 and 4. Project 4 (Shapiro) focuses on the novel role of the cell-surface molecule CD13 in the adhesion of myeloid cells to vascular endothelial cells, and explores this mechanism in vascular pathology. All the projects utilize molecular, biochemical, cell biological and in vivo mouse models. Thus three cores, administrative, fluorescence imaging and vascular histology and atherosclerosis are proposed to support the projects with state-of-the-art technology. All the projects and cores interact and mutually reinforce each other to achieve the goals of the program in a synergistic manner. Coupled with strong institutional support to the Center for Vascular Biology, it is anticipated that significant new insights on vascular inflammation and atherosclerosis will be forthcoming from this renewal program project application.
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