Cell-Cell Interactions in Thrombosis -Request for Extension of Merit Award
Cell-Cell Interactions in Thrombosis -Request for Extension of Merit Award
批准号:
8471744
负责人:
Joan H. F. Drosopoulos
金额:
$47.55万
依托单位国家:
美国
项目类别:
财政年份:
1991
资助国家:
美国
项目状态:
已结题
起止时间:
1991-08-01 至 2016-05-31
关键词:
5&apos-NucleotidaseAdenosineAgonistAmericanAnimal ModelArrhythmiaArteriesAspirinAutacoidsAwardBiochemicalBiologicalBiologyBlood CellsBlood PlateletsBlood VesselsCardiacCatabolismCaviaCell CommunicationCell surfaceCellsCerebrumCessation of lifeClinicalComplementCoronaryCoronary ArteriosclerosisCorrelative StudyDataDioxinsDisease susceptibilityDisulfidesEicosanoidsEndothelial CellsEvaluationExhibitsFamily suidaeHeartHeart DiseasesHemostatic functionHumanInfusion proceduresInjuryIschemiaKnockout MiceLungLymphocyteLymphocyte SubsetMeasurementMediatingMetabolismMolecularMusNerve EndingsNitric OxideNorepinephrineNucleotidasesOrganPatientsPerfusionPeripheralPhenotypePlatelet ActivationPlatelet InhibitorsPlatelet aggregationPredispositionPreventionProductionPropertyProstaglandins IPublic HealthRecombinantsRecruitment ActivityResearchResearch PersonnelResearch ProposalsRoleSite-Directed MutagenesisSolCD39SpecificityStrokeStructureStructure-Activity RelationshipSystemTetrachlorodibenzodioxinTherapeuticTherapeutic AgentsThrombosisThrombusToxic Environmental SubstancesToxic effectUp-Regulationadenosine deaminasebasecell typeecto-nucleotidaseectoADPasefluidityin vivointercellular communicationinterdisciplinary approachmutantnext generationnovel therapeuticsnucleotidasepreventprogramssuccess
中文摘要
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英文摘要
Injury to coronary, cerebral, and peripheral arteries evokes local platelet activation, recruitment, and thrombotic
occlusion. Prevention and treatment of platelet-driven thrombus formation is a therapeutic challenge, with critical
public health implications. In the presence of endothelial cells, platelets are unresponsive to agonists. This unrespon-
siveness is due to endothelial NTPDasel/CD39/ecto-ADPase, which rapidly metabolizes ATP and ADP released
from activated platelets. This abolishes aggregation and recruitment. Recombinant, soluble human CD39 (solCD39)
blocks human platelet aggregation in v#ro, and inhibits porcine and routine platelet aggregation ex vivo. CD39 null
mice exhibit a latent prothrombotic phenotype with increased susceptibility to stroke and cardiac and pulmonary
thrombosis. This is alleviated in both wild-type and CD39 null mice by infusion of solCD39, demonstrating its critical
role in thromboregulation. Broad, long-term objectives and specific aims include: I Molecular, biochemical and
functional studies of human solCD39: Determination of the antithrombotic efficacy of selected mutants with increased
ADP specificity/activity, and evaluation of the contribution of disulfide bridges to CD39 activity. 11Studies of the effects
of NTPDases on cell-cell signaling during ischemia: Modulation of norepinephrine release by NTPDases from cardiac
sympathetic nerve endings (cSNE) and isolated hearts from guinea pigs, wild type and CD39 null mice. Identification
of the ecto-nucleotidase complement in cSNE from mouse and human heart, and assessment of pneumoprotection
by endogenous and exogenous CD39 during second organ perfusion injury, inwild-type and CD39 null mice. I]1
Studies of NTPDase activities in lymphocytes from patients with angiographically documented coronary artery
disease (CAD) to determine whether an altered, prothrombotic nucleotidase profile is expressed in comparison to
that of lymphocytes from healthy donors. E Metabolism of adenosine derived from AMP as generated by CD39 from
ATP and ADP: Can PRP metabolize AMP and generate inhibition of platelet reactivity by production of adenosine via
5'-nucleotidase? If true, is this dependent on specific platelet agonists, or on other blood or endothelial cells? Dioxin
toxicity may involve increased catabolism of adenosine via upregulation of adenosine deaminase, thus reducing
availability of adenosine, a potent platelet inhibitor. The research represents a multidisciplinary approach to
understanding the critical role of CD39 as the prime regulator of platelet-mediated occlusive thrombosis. It is based
on compelling feasibility data and historical collaborative success, and will advance the understanding of NTPDase
biology and thromboregulation, culminating in a unique and novel therapeutic agent for thrombotic diatheses.
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Cell-Cell Interactions in Thrombosis -Request for Extension of Merit Award
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批准号:8769733
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项目类别:
-
资助金额:$45.41万
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财政年份:2013
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负责人:Joan H. F. Drosopoulos
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依托单位:
Thromboregulation by Endothelial Cells: Role of CD39
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批准号:8966657
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项目类别:
-
资助金额:$0.0万
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财政年份:2013
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负责人:Joan H. F. Drosopoulos
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依托单位:
国内基金
海外基金
鼠伤寒沙门菌5'-nucleotidase在致病过程中的作用机制研究
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批准号:--
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项目类别:--
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资助金额:50万元
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批准年份:2023
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负责人:廖成水
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依托单位: