Maintenance vs Programming in Th1 Memory Cell Development in P. Chabaudi Malaria
Maintenance vs Programming in Th1 Memory Cell Development in P. Chabaudi Malaria
批准号:
8479208
负责人:
Robin Stephens
金额:
$32.28万
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:
2011-07-01 至 2016-06-30
关键词:
AccountingAddressAffectAntigensB-LymphocytesBiological AssayCell MaintenanceCellsCellular ImmunityCessation of lifeChromatinChromatin Remodeling FactorChronicChronic DiseaseCommitComplementCulicidaeCytokine ReceptorsDataDevelopmentDiseaseDrug resistanceFlow CytometryGenetic TranscriptionGoalsHIVHand functionsHepatitis CHumanHumanitiesImmune systemImmunityImmunologic TechniquesImmunologyInfectionInflammationInterferonsKnowledgeLifeLiteratureLongevityMaintenanceMalariaMeasurableMemoryMerozoite Surface Protein 1ModelingMolecularMorbidity - disease rateMusOutcomeParasitesPatternPhasePhenotypePlaguePlanet MarsPlasmodium chabaudiPopulationPrevention strategyProductionProtocols documentationResearchResistance developmentSpeedStimulusSymptomsSystemT memory cellT-LymphocyteT-Lymphocyte SubsetsTechniquesTh1 CellsTransgenic OrganismsTuberculosisVaccinationVaccine AdjuvantVaccine DesignVaccinesWorkburden of illnesscell typecytokineflexibilityin vitro testingin vivoinnovationinsightkillingsmemory CD4 T lymphocytenovelpathogenpesticide resistanceprogramsresearch studyresponsetreatment strategyvaccination against tuberculosisvaccine development
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Two major hurdles in developing effective vaccines for chronic infections such as HIV, TB and malaria are the lack of knowledge of the critical factors for maintenance of protective immunity, and the lack of a measurable cell type that correlates with protection. To address these gaps in our knowledge, we propose to identify the protective memory T cell subsets in chronic malaria infection and define the mechanisms that they use to survive and maintain protective cytokine production. Our preliminary data demonstrate that malaria- specific T cells differentiate into effector memory cells (Tem), which contribute to protection best if they are exposed to chronic infection. Chronic infection also enhances their Th1 cytokine production (IFN3+), correlating with this protection. Therefore, our central hypothesis is that Tem subsets maintain a protective cytokine program like committed Th1 cells that is maintained by the inflammation associated with chronic infection. The goals of this proposal are therefore to determine which CD4+ memory T cell subsets are protective and survive and which help B cells (T follicular helper, Tfh) or remain committed to the Th1 phenotype. These goals will be achieved by the completion of the following specific aims: 1) To determine protection, survival and effector function (Th1, Tfh) of CD4+ effector memory T cell subsets, and 2) To determine subsets producing IFN3 and their degree of Th1 commitment. The first aim will define protective memory T cell subsets and the factors required for their maintenance and will be accomplished by in vivo protection, survival and cytokine production assays already established as feasible in the applicant's hands, using modern in vivo immunological techniques and multi-parameter flow cytometry. The second aim is firstly to test the in vitro stability of the Th1 cytokine profile of malaria-specific memory cells, using the same techniques I used in my dissertation work, and secondly; to study the indicative pattern of cytokines, cytokine receptors, transcription and chromatin tatistics factors to define mechanisms utilized by Th1 memory cells for maintenance of their effector function in chronic infection. The outcomes of these two aims will allow us to define stimuli used by protective memory CD4+ T cells to survive and the mechanisms to remain protective in chronic infection. Providing knowledge including both novel stimuli to include for a successful vaccination protocol and a memory T cell- type that correlates with protection. The approach is innovative because we have a novel malaria-specific T cell transgenic system, an accurate murine malaria model, using Plasmodium chabaudi; and also because the proposal focuses on effector memory T cells, though others have disregarded them in favor of central memory cells, in spite of evidence of better protection by Tem. This approach to vaccination is supported by evidence that generating and maintaining effector memory cells by vaccination is feasible. The proposed research is significant because the outcomes are directly applicable to malaria, HIV and TB vaccination trials and may speed the search for a protective vaccine to malaria, one of the most lethal infections of mankind.
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会议论文
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资助金额:$4.83万
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资助金额:$34.35万
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财政年份:2011
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负责人:Robin Stephens
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依托单位:
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资助金额:$34.35万
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负责人:Robin Stephens
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依托单位:
海外基金