Regulation of memory CD8+ T cell recruitment to the lung
Regulation of memory CD8+ T cell recruitment to the lung
批准号:
7999257
负责人:
Marcia A Blackman
金额:
$46.06万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2008
资助国家:
美国
项目状态:
已结题
起止时间:
2008-01-01 至 2012-12-31
关键词:
AntigensAvian Influenza A VirusCD8B1 geneCellsCellular ImmunityDataDevelopmentEffector CellHumanImmune responseImmunityInfectionInflammatoryKnowledgeLungMediatingMemoryMorbidity - disease rateNamesParainfluenza Virus InfectionsPhasePlayPrincipal InvestigatorProliferatingRecruitment ActivityRegulationResearchRespiratory SystemRespiratory tract structureRoleSevere Acute Respiratory SyndromeSignal TransductionSiteStagingStimulusT memory cellT-LymphocyteTimeTissuesVaccinesViralVirusVirus Diseaseschemokinechemokine receptorinfluenzaviruslymph nodesmortalitymouse modelmucosal vaccinationpathogenprogramsrespiratoryrespiratory infection virusrespiratory virusresponsetraffickingvaccine development
中文摘要
描述(由申请人提供):肺是许多破坏性人类病原体的主要入口,包括呼吸道病毒,如SARS冠状病毒和禽流感病毒。因此,开发特异性诱导呼吸道持久保护性免疫的疫苗至关重要。然而,肺部疫苗开发的一个重要障碍是我们对肺部细胞介导的免疫缺乏了解。为了填补这一知识空白,我们对小鼠模型中呼吸道病毒感染的回忆反应进行了详细分析。我们的数据表明,不同的记忆CD8+ T细胞亚群有助于在肺部的回忆反应的早期和晚期阶段。回忆反应的早期阶段由非增殖记忆CD8+ T细胞介导,这些细胞在感染的最初几天内通过炎症信号迅速招募到肺气道。这些细胞通过限制病毒复制发挥关键作用,直到激活的效应细胞开始到达。然而,与活化的效应T细胞相反,几乎不知道驱动循环的、非分裂的记忆T细胞募集到组织中或炎症部位中的机制。因此,在本申请中,我们将确定T细胞介导的回忆应答的早期阶段是如何被调节的。首先,我们将通过分析趋化因子和趋化因子受体的特定作用来确定在回忆反应期间调节记忆T细胞运输的机制。其次,我们将建立在这些信息,以确定是否可以利用炎症刺激,以提高保护性免疫引起的全身或粘膜接种。总之,这些研究将确定调节呼吸道细胞免疫反应的机制,并对开发促进对呼吸道病原体有效免疫的疫苗至关重要。
英文摘要
DESCRIPTION (provided by applicant): The lung is a major portal of entry for many devastating human pathogens including respiratory viruses, such as the SARS corona virus and avian influenza viruses. Therefore, it is critical to develop vaccines that specifically induce long-lasting protective immunity in the respiratory tract. However, a significant hurdle in the development of pulmonary vaccines is our poor understanding of cell-mediated immunity in the lung. To fill this gap in our knowledge, we have undertaken a detailed analysis of the recall response to respiratory virus infections in the mouse model. Our data demonstrate that distinct subpopulations of memory CD8+ T cells contribute to the early and late stages of the recall response in the lung. The early phase of the recall response is mediated by non-proliferating memory CD8+ T cells that are rapidly recruited to the lung airways by inflammatory signals during the first few days of infection. These cells play a key role by limiting viral replication until activated effector cells start to arrive. However, in contrast to activated effector T cells, there is almost nothing known about the mechanisms that drive the recruitment of circulating, non- dividing memory T cells into the tissues or into inflammatory sites. Therefore, in the current application we will determine how the early stages of a T cell mediated recall response are regulated. First, we will identify the mechanisms that regulate memory T cell trafficking during a recall response by analyzing the specific roles of chemokines and chemokine receptors. Second, we will build on this information to determine whether inflammatory stimuli can be utilized to boost protective immunity elicited by either systemic or mucosal vaccination. Together, these studies will identify the mechanisms that regulate cellular immune responses in the respiratory tract and will be important for the development of vaccines that promote effective immunity to respiratory pathogens.
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