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Regenerative Scaffold Technologies for CNS and Diabetes

Regenerative Scaffold Technologies for CNS and Diabetes
中枢神经系统和糖尿病的再生支架技术
批准号:
7468561
负责人:
SAMUEL I STUPP
金额:
$0.79万
依托单位国家:
美国
项目类别:
财政年份:
2004
资助国家:
美国
项目状态:
已结题
起止时间:
2004-09-04 至 2009-08-31
关键词:
AnatomyApplied ResearchArchitectureArtsBasic ScienceBehavioralBilateralBiodegradationBiologicalBiologyBiomedical EngineeringBoaBrainBreedingCell SurvivalCell TherapyCell TransplantsCellsChemical EngineeringChemistryClinicalClinical EngineeringClinical MedicineCollaborationsCollagen FibrilComb animal structureConditionDNADevelopmentDiabetes MellitusDiabetic mouseDiseaseEncapsulatedEndocrinologyEngineeringEnvironmentEnzymesEpitopesFeedbackGenesGeneticGrowth FactorHumanHuman bodyHybridsIn SituIn VitroInjectableInjection of therapeutic agentLaboratoriesLifeLiquid substanceMechanicsMediatingMiddle Cerebral Artery OcclusionModelingModificationMolecularNanostructuresNanotechnologyNatural regenerationNerve RegenerationNeuraxisNeurologyOperative Surgical ProceduresOutcomePancreasPatientsPeptidesPerformancePhasePhysiologicalPliabilityProceduresProcessPropertyProteinsRecombinant ProteinsRecombinantsRecoveryRegenerative MedicineReplacement TherapyResearchResearch PersonnelSchoolsScienceSideSignal TransductionSolidSpinal CordSpinal cord injuryStem cellsStrokeSystemTechnologyTestingTherapeuticTimeTissuesTranslatingTransplantationTraumaTreatment EfficacyUniversitiesUrsidae FamilyVisionWorkWound Healingbasecell motilityclinical applicationcollegecrosslinkdesigndiabetes mellitus therapydiabeticfrontierhuman tissuein vivoin vivo Modelinsightinterestisletmalemedical schoolsnanonanofibernanoscalenerve stem cellnovelpolypeptidepost strokeprogenitorprogramsrelating to nervous systemrepairedresponsescaffoldself assemblysubcutaneous

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英文摘要
Regenerative medicine is one of the great biomedical challenges of this century, seeking to regenerate parts of the human body throughout life lost to trauma, disease, or genetic factors. Real progress will hinge on our ability to combine effectively the frontiers of technology, biology, and clinical medicine to develop regenerative strategies. This Bioengineering Research Partnership (BRP), proposed by a team of seven investigators in the fields of neurology, surgery, endocrinology, materials science, chemistry, biomedical engineering, and chemical engineering, focuses on two specific challenges of great clinical importance, regeneration of the central nervous system (CNS) and cell replacement therapies for diabetic patients. In this application the target of the team is to develop multiple scaffold technologies and use CNS regeneration and pancreatic tissue replacement as their testing ground. The CNS targets include injection of self-assembling molecules and genetically engineered stem cells into the injured spinal cord or brain following stroke, and the diabetes targets include the development of a subcutaneous islet transplant. The four basic technologies are self-assembling nanofibers customizable to bear multiple tissue specific biological epitopes or have programmable delivery of growth factors; microporous biodegradable scaffolds that deliver genes or growth factors and guide cell migration; post-translationally modified recombinant polypeptides with customizable architecture and bioactivity; and enzyme-driven liquid-to-solid transitions of soluble bioactive peptides. The integrated scaffold technologies proposed include, the use of self-assembling nanofiber technology to modify microporous materials and create micro-nano hierarchical scaffolds, the adaptation of recombinant polypeptides for in situ enzyme driven solidification, and the development of bioactive two-phase molecular composite scaffolds containing linear polypeptides and peptide nanostructures.
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Supramolecular nanofibers for recombinant growth factor-free spine fusion
Supramolecular nanofibers for recombinant growth factor-free spine fusion
Supramolecular nanofibers for recombinant growth factor-free spine fusion
2013 Chemistry of Supramolecules and Assemblies Gordon Research Conference and Go
  • 批准号:
    8529859
  • 项目类别:
  • 资助金额:
    $1.0万
  • 财政年份:
    2013
  • 负责人:
    SAMUEL I STUPP
  • 依托单位:
海外基金