Microphysiological systems for modeling autoimmunity in type 1 diabetes
Microphysiological systems for modeling autoimmunity in type 1 diabetes
批准号:
10665007
负责人:
PAUL J GADUE
金额:
$112.18万
依托单位国家:
美国
项目类别:
财政年份:
2019
资助国家:
美国
项目状态:
已结题
起止时间:
2019-08-02 至 2024-07-31
关键词:
AddressAffectAllogenicAmericanAnimal ModelAntigen PresentationAntigen-Antibody ComplexAutoimmuneAutoimmune DiabetesAutoimmune DiseasesAutoimmune ProcessAutoimmunityAutopsyB cell differentiationB-LymphocytesBiological ModelsBiologyBiomimeticsCell DeathCell LineCell TherapyCellsCellular AssayCellular StressDerivation procedureDevelopmentEndothelial CellsEngineeringExocrine pancreasFibroblastsFunctional disorderFutureGenesGenetic studyGoalsHeterogeneityHumanImmuneImmune systemImmunityImmunologyIn VitroIndividualInfiltrationInsulinInsulin-Dependent Diabetes MellitusInterruptionInterventionInvestigationIslet CellIslets of LangerhansKnowledgeLeadLeukocytesMediatingMethodsModelingMolecularMutationOrganoidsPancreasPathogenesisPatientsPhasePhenotypePopulationPositioning AttributeProcessProtocols documentationRegulatory T-LymphocyteReporterReproducibilityResearchResourcesRoleSeriesSignal TransductionSiteSourceSplenocyteStructure of beta Cell of isletSystemT-Cell ReceptorT-LymphocyteTechnologyTherapeuticTimeTissue BanksTissuesTransgenic OrganismsVascularizationautoimmune pathogenesiscell bankcell killingchimeric antigen receptor T cellsdiabetes pathogenesisendoplasmic reticulum stressengineered T cellsexperimental studyimaging systemimprovedin vitro Modelinduced pluripotent stem cellinnovationinsightisletislet autoimmunitymicrodevicemicrophysiology systemmicrosystemsnovelnovel strategiesprogrammed cell death protein 1programstool
中文摘要
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英文摘要
SUMMARY
This proposal leverages our group’s complementary expertise in tissue-on-a-chip technology, immunology,
pluripotent cell derivation and differentiation, and islet biology to create robust systems containing human islet
cells, immune cells, and other features to recapitulate the process of islet autoimmunity in type I diabetes (T1D).
The UG3 phase of this proposal will improve upon already-robust microdevices and develop new cell lines and
assays that will enable studies of autoimmunity in an isogenic setting. The UH3 phase of this proposal will exploit
these tools and platforms to develop isogenic models that can be used to study immune-islet interactions. The
focus of the UH3 phase will be to investigate the determinants of islet infiltration and killing, and to determine the
effects of mutations in T1D-associated genes on this process. In addition, these in vitro systems will be used to
pilot the use of cellular therapies to interrupt the autoimmune attack of islets.
The specific aims of the UG3 phase are:
Aim 1: To expand the biomimetic platform
Aim 2: To develop models of T cell-mediated autoimmunity
Aim 3: To establish new iPSC lines and novel reporters of b cell stress and death
The specific aims of the UH3 phase are:
Aim 1: To develop isogenic models of autoimmune T1D
Aim 2: To identify determinants of islet infiltration and immune killing
Aim 3: To perform genetic studies of autoimmunity in T1D
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会议论文
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海外基金