Integrin-dependent modulation of macrophage function
巨噬细胞功能的整合素依赖性调节
基本信息
- 批准号:9207062
- 负责人:
- 金额:$ 39万
- 依托单位:
- 依托单位国家:美国
- 项目类别:
- 财政年份:2016
- 资助国家:美国
- 起止时间:2016-02-01 至 2021-01-31
- 项目状态:已结题
- 来源:
- 关键词:AblationAcute DiseaseAdenovirusesAdultAdult Respiratory Distress SyndromeAnti-Inflammatory AgentsAnti-inflammatoryApplications GrantsBiological ProcessBloodBlood-Borne PathogensCASP1 geneCell DeathCellsCessation of lifeChronic DiseaseClinical TrialsCoagulation ProcessComplement ActivationConduct Clinical TrialsCuesDataDoseEmbryoEnvironmentEquilibriumExhibitsExtracellular MatrixFrancisella tularensisGene DeliveryGene TransferGenetic TranscriptionGoalsHepatic arteryHeterogeneityHourHumanIRF3 geneImmune responseIn VitroInfectionInflammationInflammation MediatorsInflammatoryInflammatory ResponseInjection of therapeutic agentInjuryInnate Immune ResponseInnate Immune SystemIntegrinsInterleukin-1 alphaInterventionIntravenousInvadedKupffer CellsListeria monocytogenesLiverMacrophage ActivationMalignant NeoplasmsMolecularNecrosisObesityOrgan failurePathologicPathologyPathway interactionsPatientsPatternPhagocytesPharmacologyPhenotypePoliciesPopulationProcessResearchRoleSensorySepsisSignal PathwaySpleenSterilityStressSyndromeSystemTissuesUnited States National Institutes of HealthViralVirulence Factorsbasecell typeextracellularin vivoinsightmacrophagemonocytenew therapeutic targetnovelparticlepathogenphenotypic biomarkerprogramspublic health relevanceresponsesensortherapeutic target
项目摘要
DESCRIPTION (provided by applicant): Tissue residential macrophages (Mφ) are the first line of defense and one of the key cellular compartments of the innate immune system with specialized sensory, homeostatic, and effector functions that enable host protection from invading pathogens and mount adequate response to tissue damage or stress. If homeostatic signaling pathways in Mφ become dis-regulated, tissue Mφ may contribute to pathology and it is currently believed that the vast majority of human acute and chronic diseases develop with significant contributions from pro-pathogenic factors derived from the Mφ compartment. Through analyzing transcriptional responses and necrotic cell death in vivo, we have made an original observation that despite the efficient trapping of viral and bacterial pathogens from the blood, resident Mφs in liver and spleen utilize distinct molecular machineries to execute necrosis and activate pro-inflammatory mediators. Furthermore, we serendipitously found that manipulation of β1 integrin expression on Mφ in vitro and in vivo drastically alters their anti-pathogen and pro-inflammatory response phenotypes. Because the phenotypic heterogeneity of tissue Mφs became evident only recently and now is a topic of intense research in the field, littl to no information is currently available on generalized molecular mechanisms that drive this heterogeneity both at phenotypic and functional levels. The major goals of this grant proposal are to evaluate the concept that integrins serve as sensors of extracellular cues and guide the functional commitment of Mφs to tissue microenvironments and to define the molecular mechanism and signaling pathway(s) that enable β1 integrin dependent functional specialization of Mφs that is critical for balanced homeostatic and/or protective host responses to viral and bacterial pathogens. Therefore, in Specific Aim 1, we will define molecular mechanisms and signaling pathways that enable β1 integrin-dependent modulation of pro-inflammatory Mφ responses in vitro. In Specific Aim 2, we will define the role of β1 integrin in guiding functiona specialization of liver and splenic Mφs in vivo. In Specific Aim 3, we will define the role of β1
integrin in guiding tissue commitment phenotypes of embryonically-derived and adult monocyte-derived Mφs in vivo. The proposed studies will provide new mechanistic insights into fundamental cellular and molecular biological processes related to pro- inflammatory Mφ responses in vivo, and will allow for identification of novel potential therapeutic targets to tame
unwarranted severe and/or pathologic inflammation.
描述(由申请人提供):组织驻留巨噬细胞(Mφ)是第一道防线,也是先天免疫系统的关键细胞区室之一,具有专门的感觉、稳态和效应器功能,能够保护宿主免受入侵病原体的侵害,并充分发挥作用如果 Mφ 中的稳态信号通路失调,组织 Mφ 可能会导致病理学变化,目前认为绝大多数人类急性和慢性疾病的发生都与此密切相关。通过分析体内转录反应和坏死细胞死亡,我们得到了一个原始观察结果:尽管可以有效地捕获血液中的病毒和细菌病原体,但利用不同的分子在肝脏和脾脏中驻留了Mφ。此外,我们意外地发现,在体外和体内操纵 Mφ 上的 β1 整合素表达会显着改变其抗病原体和促炎作用。由于组织 Mφ 的表型异质性最近才变得明显,并且现在已成为该领域的热门研究课题,因此目前几乎没有关于在表型和功能水平上驱动这种异质性的通用分子机制的信息。该拨款提案旨在评估整合素作为细胞外信号传感器的概念,指导 Mφs 对组织微环境的功能承诺,并定义分子机制和信号通路,使Mφ 的 β1 整合素依赖性功能特化对于平衡体内平衡和/或保护性宿主对病毒和细菌病原体的反应至关重要,因此,在具体目标 1 中,我们将定义能够实现 β1 整合素依赖性调节的分子机制和信号通路。体外炎症 Mφ 反应 在具体目标 2 中,我们将定义 β1 整合素在指导体内肝脏和脾脏 Mφ 功能的作用。 3、我们来定义β1的作用
整合素在体内引导胚胎衍生和成体单核细胞衍生的 Mφ 的组织承诺表型中的作用。拟议的研究将为与体内促炎症 Mφ 反应相关的基本细胞和分子生物学过程提供新的机制见解,并将允许识别需要驯服的新的潜在治疗靶点
不必要的严重和/或病理性炎症。
项目成果
期刊论文数量(0)
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Nelson Cesar Di Paolo其他文献
Nelson Cesar Di Paolo的其他文献
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{{ truncateString('Nelson Cesar Di Paolo', 18)}}的其他基金
Integrin-dependent modulation of macrophage function
巨噬细胞功能的整合素依赖性调节
- 批准号:
9076312 - 财政年份:2016
- 资助金额:
$ 39万 - 项目类别:
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