How cell death and sterile particulates stimulate inflammation and disease
How cell death and sterile particulates stimulate inflammation and disease
批准号:
7867976
负责人:
KENNETH L ROCK
金额:
$40.7万
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-06-15 至 2014-05-31
关键词:
AbbreviationsAcuteAlveolarAntibodiesAsbestosB-LymphocytesBiologicalBronchoalveolar LavageCathepsinsCell DeathCellsCessation of lifeChronic DiseaseCytosolDendritic CellsDevelopmentDiphtheria ToxinDiseaseEventFelis catusGeneticGoalsGrantImmuneImmune systemImmunohistochemistryIn SituIndividualInfarctionInfectionInflammationInflammatoryInflammatory ResponseInterleukin-1Interleukin-1 ReceptorsIrritantsKnock-in MouseLeadMacrophage ActivationMediator of activation proteinMedicalModelingMolecularMolecular TargetMonitorNecrosisParticulatePathogenesisPathway interactionsPeroxidasesPhagosomesProcessProductionPulmonary FibrosisReperfusion InjuryRoleRuptureSentinelSilicon DioxideSterilityStimulusT-LymphocyteTestingTherapeutic InterventionTissuesToll-like receptorsUratebasebeta-Galactosidasecell injurycell typecytokinediphtheria toxin receptorin vivoiron oxidemacrophagemast cellparticlepreventpublic health relevancereceptorrepairedresponse
中文摘要
描述(由申请人提供):当细胞在体内死亡并发生坏死时,它们总是刺激炎症反应。这对邻近的健康组织造成相当大的附带损害,并被认为是许多急性和慢性疾病的发病机制的基础。许多其他颗粒刺激物(尿酸盐、二氧化硅、石棉、氧化铁等)也会刺激导致疾病的无菌炎症。这项资助的总体目标是阐明死细胞和其他无菌颗粒刺激炎症的机制。在目标1中,我们将定义体内细胞监视机制,该机制感知细胞死亡和其他刺激性颗粒刺激,并作为响应触发急性炎症反应。这一目标的假设是先天免疫系统的细胞作为哨兵发挥作用,监测组织中的这些刺激,并在检测到这些刺激后产生IL-1,然后驱动急性炎症反应。这个目标的目的是测试这一假设,并确定参与这一过程的关键细胞类型。我们还将测试这些机制在引起组织损伤和疾病中的作用。我们的第二个目标是阐明细胞生物学和分子途径,通过这些途径,死细胞和无菌颗粒刺激先天免疫细胞产生IL-1。我们的基本假设是:(i)这些颗粒刺激物必须被内化到巨噬细胞的吞噬体中;(ii)内化后导致巨噬细胞活化的关键事件是一些吞噬体的破裂;(iii)由此产生的活化的吞噬体内容物释放到胞质溶胶中由NOD样受体NLRP 3感知;和(v)组织蛋白酶是从吞噬体释放的激活NLRP 3以诱导IL-1产生的关键介质。本目标的目的是检验这些假设。这些假说的重要性在于,它们提供了一种新的和可检验的范例,如果正确的话,将揭示一个共同的统一途径,并确定治疗干预的易处理的分子靶点。公共卫生相关性:该提案旨在阐明垂死细胞和刺激性颗粒如何刺激无菌炎症。这是一个重要的问题,因为这种炎症反应是许多疾病发展的基础。拟议研究获得的信息可能会导致新的治疗方法来阻断炎症反应,从而预防或治疗疾病。
英文摘要
DESCRIPTION (provided by applicant): When cells die in vivo and undergo necrosis they invariably stimulate an inflammatory response. This causes considerable collateral damage to adjacent healthy tissue and is thought to underlie the pathogenesis of a number of acute and chronic diseases. A number of other particulate stimuli (urate, silica, asbestos, iron oxide, etc.) also stimulate sterile inflammation that leads to disease. The overall goal of this grant is to elucidate the mechanisms by which dead cells and other sterile particulates stimulate inflammation. In Aim 1 we will define the cellular surveillance mechanisms in vivo that sense cell death and other irritant particulate stimuli and in response trigger an acute inflammatory response. The hypothesis underlying this Aim is that cells of the innate immune system function as sentinels that monitor tissues for these stimuli and upon detecting them produce IL-1 that then drives the acute inflammatory response. The goal of this aim is to test this hypothesis and to define the key cell types involved in this process. We will also test the role of these mechanisms in causing tissue damage and disease. Our second Aim seeks to elucidate the cell biological and molecular pathways through which dead cells and sterile particulates stimulate innate immune cells to produce IL-1. Our underlying hypotheses are that: (i) These particulate stimuli must be internalized into phagosomes of macrophages; (ii) After internalization the key event that leads to macrophage activation is rupture of some phagosomes; (iii) The resulting release of activated phagosomal contents into the cytosol is sensed by the NOD-like receptor NLRP3; and (v) Cathepsins are the key mediators released from phagosomes that activate NLRP3 to induce IL-1 production. The goal of this Aim is to test these hypotheses. The importance of these hypotheses is that they offer a new and testable paradigm, which if correct will reveal a common unifying pathway and identify tractable molecular targets for therapeutic intervention. PUBLIC HEALTH RELEVANCE: This proposal seeks to elucidate how dying cells and irritant particulates stimulate sterile inflammation. This is an important issue because this inflammatory response underlies the development of a number of diseases. The information gained by the proposed studies may lead to new treatments to block the inflammatory response and thereby prevent or treat diseases.
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海外基金