Biodegradable Synthetic Vascular Graft
Biodegradable Synthetic Vascular Graft
批准号:
8295168
负责人:
Yadong Wang
金额:
$37.78万
依托单位国家:
美国
项目类别:
财政年份:
2007
资助国家:
美国
项目状态:
已结题
起止时间:
2007-07-25 至 2017-07-31
关键词:
AgeAnimalsAnti-Inflammatory AgentsAnti-inflammatoryAortaArchitectureArteriesBiologicalBioreactorsBlood VesselsBlood flowBypassCell Culture TechniquesCell physiologyCellsClinicalComplexCoronary Artery BypassCoupledDataDeveloped CountriesDiseaseElastinElastomersEmployee StrikesEndothelial CellsExtracellular MatrixFeedbackFundingFutureGene ExpressionGoalsGrantHealedHistologyIn SituIn VitroInfiltrationInflammationInflammatoryInflammatory ResponseIschemiaLeadMechanicsMyocardialNatural regenerationNatureNitric Oxide PathwayOrganPathway interactionsPatientsPerformancePeripheralPhenotypePhysiologic pulsePolymersPorosityProcessPropertyRattusReportingResearchResidual stateSaphenous VeinSeedsSelection CriteriaSmooth Muscle MyocytesSourceStagingStructureTestingTimeTissue EngineeringTranslationsTransplanted tissueTubeTubular formationTunica AdventitiaUltrasonographyUnited StatesUnited States National Institutes of HealthVascular DiseasesVascular Endothelial CellVascular GraftWound Healingabdominal aortaagedbasecell typecellular transductionclinically relevantcrosslinkdensitydesigndisabilityhealingimplantationin vivoinsightmortalitynerve supplynovel strategiespoly(glycerol-sebacate)polycaprolactonepressurepublic health relevancescaffoldsuccess
中文摘要
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英文摘要
This research plan builds upon the progress made with prior NIH funding but strikes out in a brand new direction. The next period of the research aims at harnessing the body's own healing capacity by creating cell-free synthetic grafts that can be rapidly remodeled by the host. The focus of the last funding period was cell-centered in vitro tissue engineering of arteries. The next stage of this project will completely bypass cell seeding and cell culture. We will use the cell-free polymer scaffolds directly as interposition grafts in abdominal aortas of mammalian hosts. The open porous graft will fully exploit the power of host remodeling more effectively than current vascular grafts that are dense and inhibit cell infiltration. The graft will function immediately as a non-thrombogenic conduit for blood flow in a similar fashion as a saphenous vein in coronary artery bypass surgery. We hypothesize that the extensive pores in the graft will facilitate host cell infiltration and the fast degrading polyer will enable rapid host remodeling to regenerate arteries in situ. This hypothesis is based on our strong preliminary data on rapid host cell infiltration and near complete regeneration of rat aorta 3 month post-implantation. The neo-arteries pulse synchronously with the host aorta and possess burst pressure and compliance comparable to native arteries. To our knowledge, this level of rapid host remodeling is unprecedented in reported vascular grafts. Three specific aims will test this hypothesis in the next five years: 1. Study the relationship between the structure o the porous tube and host remodeling of the vascular grafts. 2. Determine the impact of mechanical properties of sheath material on the performance of the vascular graft in vivo. And 3. Investigate host remodeling of the vascular grafts at the cellular level. Success in cell-free tissue engineering will accelerate clinical translation and ultimately benefit patients suffering myocardial and peripheral ischemia. Insights gained from this research will lead to new approaches in regeneration of complex organs in the future.
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依托单位:
Neurotransmitter-based poly(aminoglycerol ester)s
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批准号:7382731
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资助金额:$20.83万
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批准号:8519515
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资助金额:$35.07万
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批准号:7895160
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项目类别:
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资助金额:$36.66万
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财政年份:2007
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依托单位:
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项目类别:
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资助金额:$34.59万
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财政年份:2007
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财政年份:2007
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依托单位:
Neurotransmitter-based poly(aminoglycerol ester)s
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资助金额:$16.87万
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依托单位:
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项目类别:
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依托单位:
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项目类别:
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依托单位:
海外基金