RI COBRE: CARTILAGE TISSUE ENGINEERING FOR JOINT REPAIR
RI COBRE: CARTILAGE TISSUE ENGINEERING FOR JOINT REPAIR
批准号:
7721010
负责人:
DEBORAH McK. CIOMBOR
金额:
$16.06万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2008
资助国家:
美国
项目状态:
已结题
起止时间:
2008-08-01 至 2009-07-31
关键词:
CartilageCellsChondrogenesisComplexComputer Retrieval of Information on Scientific Projects DatabaseConditionDataDevelopmentEncapsulatedEngineeringEnvironmentFundingGene ExpressionGrantGrowth FactorHealedHumanHypoxiaImplantInstitutionJoint repairJointsLaboratoriesMicrospheresMusculoskeletalNumbersOrganOsteoblastsOxygenOxygen measurement, partial pressure, arterialPolymersProliferatingResearchResearch PersonnelResourcesSourceSynovial CellSystemTechniquesTherapeutic InterventionTissue EngineeringTissuesUnited States National Institutes of Healthbasebonecontrolled releasecosthealingin vivo Modelloss of functionrepairedresponsescaffold
中文摘要
点击翻译按钮获取中文摘要
英文摘要
This subproject is one of many research subprojects utilizing the
resources provided by a Center grant funded by NIH/NCRR. The subproject and
investigator (PI) may have received primary funding from another NIH source,
and thus could be represented in other CRISP entries. The institution listed is
for the Center, which is not necessarily the institution for the investigator.
The demand for therapeutic interventions for the treatment of musculoskeletal damage, especially repair or replacement of damaged cartilage, has increased dramatically in recent years. Currently available cartilage repair techniques have limitations, including limited healing, high cost, breakdown of the tissue implant leading to loss of function, and limited availability of competent cellular components. Therapeutic intervention for the repair of cartilage, including cell-based engineered repair, requires an understanding of the regulatory effects of growth factors and the potential for synergies with physical forces.
In development, competent cells are exposed to spatial and temporal gradients of growth factors and proliferate or differentiate in response, creating complex tissues and organs. Addtionally, the developing tissues are exposed to a changing microenvironment, which includes varying oxygen tensions. Preliminary data in our laboratory has shown that 1) synovial cells can be induced to undergo chondrogenesis in response to a temporal gradient of one growth factor, TGFIS.; 2) that the controlled release of a sequence of growth factors in encapsulated polymer microspheres and/or scaffolds can recapitulate developmental sequences of growth factor expression and 3) that osteoblasts derived from human bone removed at TKR respond to varying conditions of hypoxia by changing their profile of gene expression. The approach taken in studies proposed here explores the use of controlled oxygen environments to determine the response of tissue engineered constructs to changes in their physical microenvironment. The
studies proposed here will characterize the response of these chondroprogenitor cells to a number of relevant growth factors and will define their optimum concentrations in a system which will mimic the oxygen gradients of a normal joint. We will use this information to further examine the resulting engineered construct
of cartilage in an in vivo model of joint repair.
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RI COBRE: CARTILAGE TISSUE ENGINEERING FOR JOINT REPAIR
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批准号:8168039
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项目类别:
-
资助金额:$19.61万
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财政年份:2010
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负责人:DEBORAH McK. CIOMBOR
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依托单位:
RI COBRE: CARTILAGE TISSUE ENGINEERING FOR JOINT REPAIR
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批准号:7959907
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项目类别:
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资助金额:$15.26万
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财政年份:2009
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负责人:DEBORAH McK. CIOMBOR
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依托单位:
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