Modulation of innate immune cells to create transplant tolerance
Modulation of innate immune cells to create transplant tolerance
批准号:
8432854
负责人:
Xian Chang Li
金额:
$37.01万
依托单位国家:
美国
项目类别:
财政年份:
2011
资助国家:
美国
项目状态:
已结题
起止时间:
2011-03-01 至 2016-02-29
关键词:
AddressAdverse effectsAffectAlloantigenAllogenicAllograft ToleranceAllograftingAnimal ModelAnti-Inflammatory AgentsAnti-inflammatoryAreaAutoimmune DiseasesBone Marrow TransplantationCell Surface ReceptorsCellsCessation of lifeChronicClinicComplexDataDendritic CellsDevelopmentEffector CellEnvironmentEquilibriumExhibitsFrequenciesGoalsGraft RejectionGraft ToleranceImmuneImmune responseImmune systemImmunosuppressionImmunosuppressive AgentsInflammatoryInjuryInterleukin-10KnowledgeLeadLicensingLifeLigandsMalignant NeoplasmsMediatingMemoryModelingMusNatural Killer CellsNatureOrgan TransplantationPathway interactionsPharmaceutical PreparationsPlayPredispositionProceduresProcessProductionPropertyProtocols documentationResearchRoleSolidSystemT-LymphocyteTechniquesTestingTherapeutic InterventionTimeTissue GraftsTransplant RecipientsTransplantationallotransplantbasecancer therapycell typeclinically relevantcytokinedesignend-stage organ failurekillingsnovel therapeuticspublic health relevanceresponse
中文摘要
描述(由申请人提供):这项建议旨在解决移植后对同种异体移植物的先天免疫反应问题,这是一个研究较少且特征不佳的领域。该项目的重点是宿主同种异体反应性NK细胞和供体同种异体树突状细胞之间的相互作用,以及这种相互作用在移植模型中对T效应细胞和Tregs激活的机制和结果。这是基于我们最近的发现,即先天NK细胞在通过共刺激阻断治疗诱导同种异体移植物存活中起着关键的调节作用。我们发现,NK细胞似乎控制着移植物来源的供者细胞在移植受者中的存活和扩散,从而调节T细胞启动的关键过程,最终决定同种异体移植物的命运。我们已经提供了令人信服的初步数据,表明NK细胞和DC都是极其不同的。此外,它们对细胞因子和炎症刺激也高度敏感,因此,宿主同种异体反应性NK细胞和供体同种异体DC之间的相互作用可能是复杂的,这种相互作用对同种异体移植反应的性质(排斥与耐受)的影响可能是显著的。该方案提出的假设是,NK细胞通过调节移植受者不同供体DC亚群的生死,在诱导效应型(排斥)或调节型(耐受)免疫反应中发挥关键作用。该项目的创新之处在于研究了诱导耐受的新机制、同种异体反应性NK细胞在同种异体移植反应中的新作用以及移植模型中新的NK细胞亚群。这项研究的含义是,除了T细胞外,同种异体反应性NK细胞也应该在治疗上被操纵,以诱导移植耐受。本研究可能为临床耐受诱导提供新的治疗方案。这些研究也可能导致在临床上根据特定移植物中DC的组成合理设计DST方案或定制免疫抑制方案以诱导耐受。我们投入了大量的时间和精力来开发更好的动物模型和细胞选择/鉴定技术,从而使这些研究的实施成为可能。我们相信,在完成这一项目后,我们对同种异体移植物的先天免疫反应的理解将取得新的进展。
英文摘要
DESCRIPTION (provided by applicant): This proposal is designed to address the issue of innate immune responses to allografts following transplantation, an area that is poorly studied and ill characterized. The focus of this project is on reciprocal interactions between host alloreactive NK cells and donor allogeneic dendritic cells, and the mechanisms and consequence of such interactions on the activation of T effector cells and Tregs in transplant models. This is based on our recent discovery that the innate NK cells play a critical regulatory role in the induction of allograft survival by costimulatory blockade treatment. We found that NK cells appear to control survival and dissemination of graft-derived donor cells in transplant recipients, thereby regulating a critical process in T cell priming, and eventually the fate of an allograft. We have provided convincing preliminary data showing that both NK cells and DCs are extremely heterogeneous. In addition, they are also highly responsive to cytokines and inflammatory stimulations, and therefore, the reciprocal interactions between host alloreactive NK cells and donor allogeneic DCs are likely to be complex, and the impact of such interactions on the nature of the allograft response (rejection vs. tolerance) is likely to be significant. The hypothesis proposed in this proposal is that NK cells play a critical role in the induction of an effector type (rejection) or a regulatory type (tolerance) of immune responses by regulating life and death of different donor DC subsets in transplant recipients. The novelty of this project is the examination of new mechanisms of tolerance induction, new roles of alloreactive NK cells in the allograft response, and new subsets of NK cells in transplant models. The implication of this study is that, besides T cells, the alloreactive NK cells should also be therapeutically manipulated for the induction of transplant tolerance. The proposed studies may lead to the development of new therapeutic protocols in tolerance induction in the clinic. These studies may also lead to the rational design of DST protocols or tailored immunosuppressive protocols based on the composition of DCs in a particular graft in tolerance induction in the clinic. We have invested considerable time and efforts in the development of better animal models and cells selection/identification techniques, which makes execution of these studies feasible. We are confident that new advances in our understanding of innate immune responses to allografts will be made after accomplishment of this project.
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