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Polymeric Matrices with Defined Cell Adhesion

Polymeric Matrices with Defined Cell Adhesion
具有明确细胞粘附力的聚合物基质
批准号:
8043663
负责人:
David J Mooney
金额:
$35.94万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
1998
资助国家:
美国
项目状态:
已结题
起止时间:
1998-08-01 至 2014-02-28
关键词:
3-DimensionalAcrylamidesActomyosinAddressAdhesionsAdhesivesAffectAffinityAlginatesAreaArginineAspartic AcidAtomic Force MicroscopyAwardBindingBiocompatible MaterialsBiological AssayBiologyBiotinBone RegenerationBone TissueCalciumCalibrationCartilageCell AdhesionCell CommunicationCell CountCell Culture TechniquesCell CycleCell DensityCell Differentiation processCell ProliferationCell TransplantsCell membraneCellsCleaved cellCollagenColorCommitConfocal MicroscopyCoupledCuesCyclic PeptidesDNADNA Sequence RearrangementDataDentalDentistryDependenceDependencyDevelopmentDimensionsElasticityEncapsulatedEnergy TransferExtracellular MatrixFaceFibronectinsFluoresceinFluorescenceFluorescence Resonance Energy TransferGelGene ExpressionGene TransferGenetic MaterialsGlycineGoldGraphGrowth FactorHeightHydrogelsImageIn SituIn VitroIncubatedInstructionIntegrinsLabelLamininLeadLeftLifeLigand BindingLigandsLinkLipidsLuciferasesMapsMeasurementMeasuresMechanicsMediatingMembraneMesenchymal Stem CellsMicaMicrofilamentsMolecular WeightMonitorMyoblastsNanostructuresOralOsteoblastsOsteocalcinOsteogenesisPatientsPenetrationPeptidesPhenotypePlasticsPolymersPopulationPropertyPublicationsRGD (sequence)RGD ReceptorRadialReceptor CellResearchRoleScanning Probe MicroscopesScreening procedureSeriesSiteSolutionsSpecificitySpectrum AnalysisStagingStem cellsStreptavidinStructureSuggestionSurfaceSynthetic Peptide LibrariesSystemTechniquesTestingThymidineTimeTissuesTractionadhesion receptoranalogbasebonecell typecellular imagingchemical propertycraniofacialcrosslinkdensitydesignfluorophoregene therapyin vivoinhibitor/antagonistmatrigelnanoparticlenanoscalenon-viral gene deliverynon-viral gene therapynovelnovel strategiesosteoblast differentiationosteoprogenitor cellphysical propertyplasmid DNAreceptorrepairedresearch studyresponsesingle cell analysisspectroscopic imagingstem cell differentiationsuccesstetramethylrhodaminetooluptakevector

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中文摘要
翻译
该项目的长期目标是开发促进新骨形成的材料系统 重建牙科和颅面应用。指导我们研究的总体假设是 材料系统的设计可以基于对细胞受体材料的基本和定量的了解 配基结合,为混合物中存在的特定细胞类型提供选择性优势,并引导 由这些细胞形成的组织。这一假设代表了我们目前努力发展的延续。 通过了解和操纵细胞黏附肽的作用来促进骨再生的材料 呈递(呈递底物的类型、密度、配基间距和机械性能) 骨祖细胞分化和骨形成。在扩展中需要检验的具体假设 这项优秀奖是海藻酸凝胶的机械性能和细胞黏附配体呈现 可能被调整为专门促进间充质干细胞(MSC)的黏附、增殖和 从移植细胞群或诱导宿主分化并增强体内骨再生 细胞。具体目标将包括:(1)开发一种基于FRET的技术来执行单细胞分析 受体-配体结合动力学(Kon,Koff,Kd),以确定配体如何呈现(密度, 间距、凝胶机械性能)调节键的形成,(2)用此分析Kon、Koff和Kd 使用源自天然细胞外基质分子的合成多肽库的技术(例如, 纤维连接蛋白、胶原蛋白、层粘连蛋白),以鉴定具有高特异性的MSC黏附和 可能处于不同的分化阶段,以及(3)测试特定配体和配体呈现的能力 从大规模筛选中挑选出来,以增强移植细胞群体的骨再生和 宿主细胞群。这些研究的成功将带来可以显著增强骨骼的生物材料 通过专门促进少数细胞的黏附、增殖和分化来再生 骨祖细胞通常存在于细胞群体中,无论是体外还是体内。
英文摘要
The long-term objective of this project is to develop material systems that promote new bone formation for reconstructive dental and craniofacial applications. The overall hypothesis guiding our research is that material systems may be designed, based on a fundamental and quantitative understanding of cell receptormaterial ligand binding, to provide a selective advantage to specific cell types present in a mixture, and guide tissue formation from these cells. This hypothesis represents a continuation of our current effort to develop materials to promote bone regeneration by understanding and manipulating the role of cell adhesion peptide presentation (type, density, spacing of ligand, and mechanical properties of presenting substrate) in osteoprogenitor differentiation and bone formation. The specific hypothesis to be tested in the extension of this MERIT award is that the mechanical properties and cell adhesion ligand presentation of alginate gels may be tuned to specifically promote mesenchymal stem cell (MSC) adhesion, proliferation and differentiation, and enhance bone regeneration in vivo from transplanted cell populations or induced host cells. The specific aims will include: (1) Develop a FRET-based technique to perform single cell analysis of receptor-ligand binding dynamics (kon, koff, KD) in order to determine how ligand presentation (density, spacing, gel mechanical properties) regulate bond formation, (2) Analyze kon, koff, and KD with this technique using libraries of synthetic peptides derived from natural extracellular matrix molecules (e.g., fibronectin, collagen, laminin) in order to identify materials with high specificity for MSC adhesion and possibly distinct stages of differentiation, and (3) Test the ability of specific ligands and ligand presentations chosen from the large-scale screening to enhance bone regeneration from transplanted cell populations and host cell populations. Success in these studies will lead to biomaterials that can dramatically enhance bone regeneration by specifically promoting the adhesion, proliferation and differentiation of the small numbers of osteoprogenitors typically present in cell populations, either in vitro or in vivo.
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Viscoelasticity and T Cell Production
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Scaffolds mimicking antigen presenting cells
  • 批准号:
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  • 项目类别:
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  • 财政年份:
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  • 批准号:
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  • 项目类别:
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海外基金