Hemodynamics of Cerebral Arteriovenous Malformations
Hemodynamics of Cerebral Arteriovenous Malformations
批准号:
8629502
负责人:
HUA SU
金额:
$31.11万
依托单位国家:
美国
项目类别:
财政年份:
1990
资助国家:
美国
项目状态:
已结题
起止时间:
1990-08-01 至 2018-12-31
关键词:
AbbreviationsActivinsAddressAdultAdverse effectsAnimal ModelArteriovenous malformationBlood VesselsBone MarrowBrainCaringCell TherapyCellsCerebral Arteriovenous MalformationsClinical DataClinical TrialsDataDepositionDevelopmentDiseaseDoseDysplasiaENG geneEndoglinEndothelial CellsErythrocytesFundingGene MutationGenesHealthHereditary hemorrhagic telangiectasiaHumanIn VitroIndividualIntracranial HemorrhagesIronLesionLifeLigandsLiverLungMeasuresMedicalModelingMusNatural HistoryPathogenesisPathway interactionsPatientsPharmaceutical PreparationsPhasePhenotypePhosphotransferasesPositioning AttributeProteinsProto-Oncogene Proteins c-sisResearchRiskRuptureSeveritiesSignal TransductionSpontaneous RuptureTestingThalidomideTranslatingTranslationsVascular Endothelial Growth FactorsWorkanalogbasecell typecomparativedesigngene functionhemodynamicsimprovedin vivolenalidomideloss of functionmacrophagemonocytemouse modelneovasculaturenotch proteinnoveloverexpressionpre-clinicalprimary outcomerepairedresearch studyresponsesynergismtherapeutic targettherapy development
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Brain arteriovenous malformation (bAVM) patients are at risk of intracranial hemorrhage (ICH). Roughly 20% of patients are not offered treatment because of excessive risk of invasive therapy, and treatment of unruptured lesions has become controversial. There are no specific medical therapies to treat bAVMs. We have developed novel adult-onset mouse models using homozygous conditional deletion of Activin-like kinase (Alk1) and Endoglin (Eng), the causative genes for a familial form of bAVM (Hereditary Hemorrhagic Telangiectasia). The models have phenotypes mimicking key aspects of human bAVM. Aims 1 and 2 will address how loss of function of these two genes results in essentially the same human bAVM phenotype, which is not currently understood, while Aim 3 will develop much-needed therapy for bAVM. Aim 1 examines how loss of Alk1 or Eng gene function alters signaling that is crucial for structural integrity of the vascular wall. For Aim 1a (in vitro) and im 1b (in vivo), the overarching hypothesis is that: (1) ALK1 or ENG deletion with VEGF stimulation leads to reduced expression of the Notch ligand, Delta-like ligand-4 (DLL4), in brain microvascular endothelial cells; (2) decreased DLL4 results in deficient platelet-derived growth factor-B (PDGFB) signaling; (3) consequently, mural cell recruitment is impaired. Aim 2 focuses on the cellular loci where the loss of gene function acts. We hypothesize that Alk1 or Eng-deficient bone marrow (BM)-derived endothelial cells (EC) and/or macrophages (Mo) are sufficient to induce dysplasia (bAVM phenotype). We will test whether BM-derived EC (Aim 2a) or BM-derived Mo (Aim 2b) are sufficient to induce dysplasia. In Aim 2c, we will test for synergism between the two cells types, and in Aim 2d, we will use cell-specific overexpression of Notch signaling (Notch1 in Mo or Dll4 in EC) to rescue the effects of Alk1 or Eng deletion. Aim 3 will provide pre-clinical data on one promising drug that was selected, in part, based on our hypotheses in Aim 1. Our data suggest that thalidomide decreases the severity of dysplasia and stabilizes the vascular wall. Because of thalidomide's well-known adverse effect profile, we will test lenalidomide, a new, less toxic analogue. In Aim 3a, we hypothesize that lenalidomide is superior to thalidomide. In Aim 3b, we will determine efficacy of lenalidomide by constructing dose-inhibitory curves in our Alk1 deletion model. In Aim 3c, to insure broader applicability, we will test lenalidomide in our Eng deletion model using a near-maximally effective dose. These pre-clinical data can be used to support early-phase clinical trials. The proposed work will underpin continued efforts to elucidate the mechanisms of bAVM pathogenesis and improve care for bAVM patients.
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会议论文
Reduction of Brain AVM Severity through Inhibition of Pathogenic Angiogenesis
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批准号:10554394
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资助金额:$57.4万
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财政年份:2020
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负责人:HUA SU
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Reduction of Brain AVM Severity through Inhibition of Pathogenic Angiogenesis
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财政年份:2020
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资助金额:$39.64万
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财政年份:2015
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Cell type-specific influences on HHT pathogenesis
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批准号:9407153
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项目类别:
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资助金额:$39.1万
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财政年份:2015
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负责人:HUA SU
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依托单位:
Cell type-specific influences on HHT pathogenesis
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批准号:8995684
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项目类别:
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资助金额:$39.7万
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财政年份:2015
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负责人:HUA SU
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依托单位:
Soluble VEGF receptor therapy for brain arteriovenous malformation
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批准号:8702392
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项目类别:
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资助金额:$39.44万
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财政年份:2014
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负责人:HUA SU
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依托单位:
Soluble VEGF receptor therapy for brain arteriovenous malformation
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批准号:8833344
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项目类别:
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资助金额:$39.59万
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财政年份:2014
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负责人:HUA SU
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依托单位:
Targeted Gene Expression in Ischemic Brain by Intravenous Delivery
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批准号:7876141
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项目类别:
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资助金额:$19.31万
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财政年份:2010
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负责人:HUA SU
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依托单位:
Targeted Gene Expression in Ischemic Brain by Intravenous Delivery
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批准号:8018592
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项目类别:
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资助金额:$18.93万
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财政年份:2010
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负责人:HUA SU
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依托单位:
Laboratory
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批准号:8376492
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项目类别:
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资助金额:$22.74万
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财政年份:2003
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负责人:HUA SU
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依托单位:
Laboratory
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批准号:8049030
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项目类别:
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资助金额:$23.59万
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财政年份:2003
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负责人:HUA SU
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依托单位:
Laboratory
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批准号:8243602
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项目类别:
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资助金额:$21.43万
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财政年份:2003
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负责人:HUA SU
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依托单位:
Laboratory
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批准号:8451443
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项目类别:
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资助金额:$18.68万
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财政年份:2003
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负责人:HUA SU
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依托单位:
Laboratory
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批准号:7663704
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项目类别:
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资助金额:$24.63万
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财政年份:2003
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负责人:HUA SU
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依托单位:
Uncover the Pathogenesis of Brain Arteriovenous Malformation
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批准号:10568988
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项目类别:
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资助金额:$50.48万
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财政年份:1990
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负责人:HUA SU
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依托单位:
Uncover the Pathogenesis of Brain Arteriovenous Malformation
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批准号:10308029
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项目类别:
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资助金额:$52.35万
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财政年份:1990
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负责人:HUA SU
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依托单位:
Hemodynamics of Cerebral Arteriovenous Malformations
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批准号:8415938
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项目类别:
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资助金额:$31.96万
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财政年份:1990
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负责人:HUA SU
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依托单位:
Hemodynamics of Cerebral Arteriovenous Malformations
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批准号:8786112
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项目类别:
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资助金额:$31.26万
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财政年份:1990
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负责人:HUA SU
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依托单位:
Uncover the Pathogenesis of Brain Arteriovenous Malformation
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批准号:10084324
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项目类别:
-
资助金额:$53.74万
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财政年份:1990
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负责人:HUA SU
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依托单位:
海外基金